Skip to main content

Dr. Timothy Lash

Distinguished Professor, Organic Chemistry
Office
SLB Science Lab Building 306
Office Hours
Mon. 9-10:30; Wed. 9-10:30; Fri. 9-10:30; or by appt.
  • About
  • Education
  • Awards & Honors
  • Selected Research

Current Courses

CHE 299.013 Independent Honor Study In Chemistry

CHE 499.013 Independent Research For The Master's Thesis

CHE 230.001 Organic Chemistry I

CHE 233.003 Organic Chemistry Laboratory II

CHE 290.013 Research in Chemistry

CHE 490.013 Research In Chemistry

Teaching Interests & Areas

Organic Chemistry, Heterocyclic Chemistry, Organic Synthesis, Structure Determination using Spectroscopic Methods

Research Interests & Areas

Synthesis of Porphyrins, Carbaporphyrins and Other Biologically and Medicinally Active Macrocycles. Nature has selected the porphyrin nucleus, generally in metalated form, for a surprising number of functions that include oxygen transportation in mammals (hemoglobin), energy production from molecular oxygen reduction as part of the respiratory chain (cytochrome oxidase), electron transport/redox (cytochromes), peroxide breakdown (catalase, peroxidases), photosynthesis (chlorophylls) and so on. The versatility of this tetrapyrrolic system stems in part from its intrinsic stability and its ability to form chelates with many different transition metals at varying oxidation levels. Porphyrins also represent an unparalleled family of aromatic macrocycles that formally possess [18]annulene characteristics and as such are the only naturally occurring examples of higher bridged annulene structures. Although the porphyrin system is generally near planar, it can be severely distorted from planarity without significantly sacrificing its aromatic properties. On the other hand, the biological functions of metalloporphyrins are known to be modulated by conformational restrictions within protein environments. Porphyrin and their derivatives are often used as photosensitizers in a type of cancer treatment known as photodynamic tumor therapy (PDT) and have found many other medicinal applications, e.g. in the treatment of age-related macular degeneration. In my laboratory, we are developing new synthetic routes to these important macrocyclic compounds. These projects are directed at the synthesis of true porphyrins and related species with novel spectroscopic and chemical properties.

The major emphasis of our current investigations involves the synthesis of porphyrin analogues with exotic subunits such as azulene, benzene, naphthalene, indene, cyclopentadiene, cycloheptatriene, pyridine or pyrazole replacing one or more of the usual pyrrole rings. These studies provide new insights into the nature of aromaticity in these "[18]annulenes of nature" and have resulted in the discovery of remarkable new chemistry. For instance azuliporphyrins have been shown to readily form stable organometallic derivatives with nickel(II), palladium(II), platinum(II), iridium(III) and rhodium(III), whereas copper(II) salts give rise to a regioselective oxidation at the internal carbon. In contrast, benzocarbaporphyrins act as trianionic organometallic ligands, generating stable silver(III) and gold(III) derivatives. Benzocarbaporphyrins also react with ferric chloride in alcohol solvents to give carbaporphyrin ketals with strong long wavelength absorptions that make these structures good candidates as superior photosensitizers for applications in PDT. In addition, carbaporphyrin ketals show some promise in the treatment of leishmaniasis. Another carbaporphyrinoid system synthesized by our research group is oxybenziporphyrin, and this acts as both a dianionic or a trianionic ligand generating palladium(II), platinum(II), copper(III), silver(III) and gold(III) complexes. New methodologies are also being developed to synthesize dicarbaporphyrinoid systems that exhibit equally exciting reactivity.

Research from our group has been highlighted on four journal covers (Tetrahedron in 2005, the European Journal of Organic Chemistry in 2007 and Organic & Biomolecular Chemistry in 2013 and 2015) and as a frontispiece for the top ranked journal Angewandte Chemie in 2004. To date, I have published over 220 papers in international research journals and received 23 external grants from NSF, NIH, the Petroleum Research Fund and the Camille and Henry Dreyfus Foundation for a total of over 3 million dollars.

Ph D Organic Chemistry

University of Wales, College of Cardiff
United Kingdom

MS Organic Chemistry

University of Wales, College of Cardiff
United Kingdom

BS Chemistry

University of Exeter
United Kingdom

ISU College of Arts and Sciences Distinguished Lecturer

Illinois State University
2013

ISU ‘Million Dollar Club’

Illinois State University
2009

Illinois Heartland Local ACS Section ‘Chemist of the Year’ Award

American Chemical Society
2004

ISU College of Arts and Sciences Dean’s Award for Outstanding Scholarship

Illinois State University
2004

Beckman mentor

Beckman Foundation
2003

Beckman mentor

Beckman Foundation
2000

Distinguished Professor

Illinois State University
2000

Camille and Henry Dreyfus Scholar

Camille and Henry Dreyfus Foundation
1996

ISU Outstanding University Researcher

Illinois State University
1995

ISU Outstanding College of Arts and Sciences Researcher (Science Division)

Illinois State University
1993

ISU University Research Initiative Award

Illinois State University
1986

Grants and Contracts

RUI: Aromaticity, Tautomerization and Metalation of Carbaporphyrinoid Systems
Timothy David Lash.
National Science Foundation. September 1 2019 - August 31 2022
RUI: Carbaporphyrins, carbachlorins and related conjugated macrocycles
Timothy D Lash.
National Science Foundation. August 1 2015 - July 31 2018
Synthesis of Azaannulenes Related to the Porphyrins
Timothy D Lash.
Petroleum Research Fund. January 1 2013 - August 31 2016
RUI: Carbaporphyrins, Neo-Confused Porphyrins and Related Systems
Timothy D Lash.
National Science Foundation. August 1 2012 - July 31 2016
Synthesis of highly modified porphyrinoid systems
Timothy D Lash.
National Science Foundation. August 2009 - August 2012
Carbaporphyrins and other highly modified porphyrinoid systems
Timothy D Lash.
National Science Foundation. August 2006 - July 2011
The Quest for Hydrocarbon Analogues of the Porphyrins
Timothy D Lash.
ACS-Petroleum Research Fund. January 1 2005 - August 31 2010
Porphyrins, Carbaporphyrins and Related Conjugated Macrocycles
Timothy D Lash.
National Science Foundation. January 1 2002 - December 31 2005

Book, Chapter

Carbaporphyrins and Related Systems. Synthesis, Characterization, Reactivity and Insights into Porphyrinoid Aromaticity
Timothy David Lash.
(2012), 16, 329, Handbook of Porphyrin Science - With Applications to Chemistry, Physics, Material Science, Engineering, Biology and Medicine, World Scientific
Syntheses of Novel Porphyrinoid Chromophores
Timothy D Lash.
(2000), 2, 125-199, The Porphyrin Handbook
Synthesis of porphyrins with exocyclic rings from cycloalkenopyrroles
Timothy D Lash.
(1995)
Heteroporphyrins and Carbaporphyrins
Timothy D Lash.

Journal Article

Synthesis and characterization of N-methylporphyrins, heteroporphyrins, carbaporphyrins and related systems.
Timothy David Lash.
Journal of Organic Chemistry, 85 (20), 13050-13068, (2028), 10.1021/acs.joc.0c01737
Alphabet soup within a porphyrinoid cavity: synthesis of heterocarbaporphyrins with CNNO, CNOO, CNSO and CNSeO cores from an oxacarbatripyrrin
Timothy David Lash.
Chemical Communications, 54 (65), 9003-9006, (2027), 10.1039/C8CC04976A
Out of the blue! Azuliporphyrins and related carbaporphyrinoid systems
Timothy D Lash.
Accounts of Chemical Research, (2018), 10.1021/acs.accounts.5b00523
Carbaporphyrinoid Systems
Timothy D Lash.
Chemical Reviews, 117 (4), 2313-2446, (2017)
Benziporphyrins, a unique platform for exploring the aromatic characteristics of porphyrinoid systems.
Timothy David Lash.
Organic & biomolecular chemistry, (2015), 10.1039/c5ob00892a
Mechanochemical formation of a 1:1 C60:tert-butylcalix[4]azulene supramolecular complex: solid-state NMR and DFT computational studies
Timothy D Lash, Paris E Georghiou.
Supramolecular Chemistry, 7 pages, (2015)
Preparation, structural characterization, assessment of potential antiaromaticity and metalation of 21-oxyazuliporphyrins
Timothy D Lash, Denise A Colby, Jessica A El-Beck, Deyaa I AbuSalim, Gregory M Ferrence.
Inorganic Chemistry, (2015)
Rhodium(III) azuliporphyrins
Timothy D. Lash, Leah M. Stateman, Gregory M Ferrence.
Organometallics, (2015)
Syntheses of carbaporphyrinoid systems using a carbatripyrrin methodology
Timothy D Lash, Leah M Stateman.
Organic Letters, (2015), 10.1021/acs.orglett.5b02219
Tropone-fused carbaporphyrins.
Timothy David Lash, G C Gilot, D I AbuSalim.
The Journal of organic chemistry, 79 (20), 9704-16, (2015), 10.1021/jo5018553
adj-Dicarbachlorin, the first example of a free base carbaporphyrinoid system with an internal methylene unit
Timothy D Lash, Deyaa I AbuSalim, Gregory M Ferrence.
Chemical Communications, 51, (2015)
In Pursuit of Novel Porphyrin Isomers. Aromatic Character and Relative Stability of Conjugated Tetrapyrroles with Two Neo-Confused Rings or with Mixed Neo-Confused and N-Confused Subunits
Timothy David Lash, Deyaa I AbuSalim.
Journal of Physical Chemistry, (2014)
Metal complexes of carbaporphyrinoid systems.
Timothy David Lash.
Chemistry, an Asian journal, 9 (3), 682-705, (2014), 10.1002/asia.201301594
Relative stability of benziporphyrin and naphthiporphyrin tautomers and the emergence of macrocyclic diatropicity.
Deyaa I AbuSalim, Timothy David Lash.
Organic & Biomolecular chemistry, 12 (43), 8719-36, (2014), 10.1039/c4ob01659a
Synthesis and metalation of dimethoxybenziporphyrins, thiabenziporphyrins and dibenziporphyrins
Stacy Fosu, Gregory M Ferrence, Timothy David Lash.
Journal of Organic Chemistry, 79 (22), 11061-11074, (2014), 10.1021/jo502063w
Synthesis and metalation of dimethoxybenziporphyrins, thiabenziporphyrins, and dibenziporphyrins.
S C Fosu, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 79 (22), 11061-74, (2014), 10.1021/jo502063w
Synthesis and reactivity of carbachlorins and carbaporphyrins.
D Li, Timothy David Lash.
The Journal of Organic Chemistry, 79 (15), 7112-21, (2014), 10.1021/jo501287q
Synthesis of an adj-dicarbaporphyrin and the formation of an unprecedented tripalladium sandwich complex
Deyaa I. AbuSalim, Gregory M. Ferrence, Timothy David Lash.
Journal of the American Chemical Society, 136, 6763-6772, (2014), 10.1021/ja502795x
Synthesis of an adj-dicarbaporphyrin and the formation of an unprecedented tripalladium sandwich complex.
D I AbuSalim, Gregory Ferrence, Timothy David Lash.
Journal of the American Chemical Society, 136 (18), 6763-72, (2014), 10.1021/ja502795x
Synthesis, structural characterization and reactivity of heteroazuliporphyrins
Timothy David Lash, Jessica A. El-Beck, Gregory M. Ferrence.
Organic & Biomolecular Chemistry, 12 (2), 316-329, (2014), 10.1039/c3ob41992d
Synthesis, structural characterization and reactivity of heteroazuliporphyrins.
Timothy David Lash, J A El-Beck, Gregory Ferrence.
Organic & biomolecular chemistry, 12 (2), 316-29, (2014), 10.1039/c3ob41992d
Synthesis, structural characterization, aromatic characteristics, and metalation of neo-confused porphyrins, a newly discovered class of porphyrin isomers.
R Li, A D Lammer, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 79 (9), 4078-93, (2014), 10.1021/jo500580e
Synthesis, structural characterization, aromatic properties and metalation of neo-confused porphyrins, a newly discovered class of porphyrin isomers
Ruoshi Li, Aaron D. Lammer, Gregory M. Ferrence, Timothy David Lash.
Journal of Organic Chemistry, 79, 4078-4093, (2014), 10.1021/jo500580e
Unusual Peroxide-Dependent, Heme-Transforming Reaction Catalyzed by HemQ.
A I Celis, B R Streit, G C Moraski, R Kant, Timothy David Lash, G S Lukat-Rodgers, K R Rodgers, J L DuBois.
Biochemistry, (2014), 10.1021/acs.biochem.5b00492
6-Oxopyriphlorins.
A M Young, Timothy David Lash.
Organic & biomolecular chemistry, 11 (39), 6841-8, (2013)
Aromatic character and relative stability of neo-confused porphyrin tautomers and related compounds.
D I AbuSalim, Timothy David Lash.
Organic & biomolecular chemistry, 11 (48), 8306-23, (2013), 10.1039/c3ob42063a
Dicarbaporphyrinoid systems. Synthesis of oxo-adj-dibenziphlorins.
D I AbuSalim, Michelle Merfeld, Timothy David Lash.
The Journal of organic chemistry, 78 (20), 10360-8, (2013), 10.1021/jo401756q
Relative stability and diatropic character of carbaporphyrin, dicarbaporphyrin, tricarbaporphyrin, and quatyrin tautomers.
D I AbuSalim, Timothy David Lash.
The Journal of organic chemistry, 78 (22), 11535-48, (2013), 10.1021/jo4021198
Synthesis of a neo-confused porphyrin and an unusual dihydroporphyrin derivative
Ruoshi Li, Gregory M. Ferrence, Timothy David Lash.
Chemical Communications, 49 (68), 7537-7539, (2013)
Synthesis of a neo-confused porphyrin and an unusual dihydroporphyrin derivative.
R Li, Gregory Ferrence, Timothy David Lash.
Chemical communications (Cambridge, England), 49 (68), 7537-9, (2013), 10.1039/c3cc44248a
Synthesis of benziporphyrins and heterobenziporphyrins and an assessment of the diatropic characteristics of the protonated species
Timothy David Lash, Ashley M. Toney, Kylie M. Castans, Gregory M. Ferrence.
Journal of Organic Chemistry, 78, 9143-9152, (2013), 10.1021/jo401365p
Synthesis of benziporphyrins and heterobenziporphyrins and an assessment of the diatropic characteristics of the protonated species.
Timothy David Lash, A M Toney, K M Castans, Gregory Ferrence.
The Journal of organic chemistry, 78 (18), 9143-52, (2013), 10.1021/jo401365p
Carbaporphyrins, porphyrin isomers and the legacy of Emanuel Vogel
Timothy D Lash.
Journal of Porphyrins and Phthalocyanines, 16 (5-6), 423-433, (2012), 10.1142/S1088424612300017
Further observations on conformational and substituent effects in acid-catalyzed "3 + 1" cyclizations of tripyrranes with aromatic dialdehydes.
Timothy David Lash, K M Bergman.
The Journal of organic chemistry, 77 (21), 9774-83, (2012), 10.1021/jo301945f
Iridium(III) azuliporphyrins
Timothy David Lash, Pokharel Komal, Zeller Matthias, Gregory M. Ferrence.
Chemical Communications, 48, 11793-11795, (2012)
Iridium(III) azuliporphyrins.
Timothy David Lash, K Pokharel, M Zeller, Gregory Ferrence.
Chemical communications (Cambridge, England), 48 (96), 11793-5, (2012), 10.1039/c2cc37104a
New application for expanded porphyrins: sapphyrin and heterosapphyrins as inhibitors of Leishmania parasites.
John Hooker, V H Nguyen, V M Taylor, D L Cedeño, Timothy David Lash, Marjorie Jones, S M Robledo, I D Vélez.
Photochemistry and photobiology, 88 (1), 194-200, (2012), 10.1111/j.1751-1097.2011.01034.x
Preparation of azulene-derived fulvenedialdehydes and their application to the synthesis of stable adj-dicarbaporphyrinoids.
Timothy David Lash, A D Lammer, Aparna Idate, D A Colby, Klarisa Jean White.
The Journal of organic chemistry, 77 (5), 2368-81, (2012), 10.1021/jo2026977
Two-step synthesis of stable dioxadicarbaporphyrins from bis(3-indenyl)methane
Timothy David Lash, Aaron D. Lammer, Gregory Ferrence.
Angewandte Chemie, International Edition, 51 (43), 10871-10875, (2012)
Two-step synthesis of stable dioxadicarbaporphyrins from bis(3-indenyl)methane.
Timothy David Lash, A D Lammer, Gregory Ferrence.
Angewandte Chemie (International ed. in English), 51 (43), 10871-5, (2012), 10.1002/anie.201206385
In vitro and in vivo studies of the utility of dimethyl and diethyl carbaporphyrin ketals in treatment of cutaneous leishmaniasis
V. M. Taylor, David Cedeno, D. L. Munoz, Marjorie Jones, Timothy David Lash, A. M. Young, M. H. Constantino, N. Esposito, I. D. Velez, S. M. Robledo.
Antimicrobial Agents and Chemotherapy, 55, 4755-4764, (2011)
In vitro and in vivo studies of the utility of dimethyl and diethyl carbaporphyrin ketals in treatment of cutaneous leishmaniasis.
V M Taylor, D L Cedeño, D L Muñoz, Marjorie Jones, Timothy David Lash, A M Young, M H Constantino, N Esposito, I D Vélez, S M Robledo.
Antimicrobial agents and chemotherapy, 55 (10), 4755-64, (2011), 10.1128/AAC.00671-11
Naphthiporphyrins
Timothy David Lash, Alexandra M. Young, Jane M. Rasmussen, Gregory M. Ferrence.
Journal of Organic Chemistry, 76, 5636-5651, (2011)
Naphthiporphyrins.
Timothy David Lash, A M Young, J M Rasmussen, Gregory Ferrence.
The Journal of organic chemistry, 76 (14), 5636-51, (2011), 10.1021/jo200622s
Neo-confused porphyrins, a new class of porphyrin isomers
Timothy David Lash, Aaron D. Lammer, Gregory M. Ferrence.
Angewandte Chemie, International Edition, 50, 9718-9721, (2011)
Neo-confused porphyrins, a new class of porphyrin isomers.
Timothy David Lash, A D Lammer, Gregory Ferrence.
Angewandte Chemie (International ed. in English), 50 (41), 9718-21, (2011), 10.1002/anie.201104826
Normal and abnormal heme biosynthesis. Part 7. Synthesis and metabolism of coproporphyrinogen-III analogues with acetate or butyrate side chains on rings C and D. Development of a modified model for the active site of coproporphyrinogen oxidase
Timothy David Lash, Teresa R. Lamm, J. Andy Schaber, Wen-hsiang Chung, Eric K. Johnson, Marjorie Jones.
Bioorganic and Medicinal Chemistry, 19, 1492-1504, (2011)
Normal and abnormal heme biosynthesis. Part 7. Synthesis and metabolism of coproporphyrinogen-III analogues with acetate or butyrate side chains on rings C and D. Development of a modified model for the active site of coproporphyrinogen oxidase.
Timothy David Lash, T R Lamm, J A Schaber, W H Chung, E K Johnson, Marjorie Jones.
Bioorganic & medicinal chemistry, 19 (4), 1492-504, (2011), 10.1016/j.bmc.2010.12.053
Origin of Aromatic Character in Porphyrinoid Systems
Timothy David Lash.
Journal of Porphyrins and Phthalocyanines, 15 (11-12), 1093-1115, (2011)
Pyrazole analogues of porphyrins and oxophlorins.
A M Young, A L Von Ruden, Timothy David Lash.
Organic & biomolecular chemistry, 9 (18), 6293-305, (2011), 10.1039/c1ob05603d
Pyrazole analogues of the porphyrins and oxophlorins
A. M. Young, A. L. Von Ruden, Timothy David Lash.
Organic & Biomolecular Chemistry, 9 (18), 6293-6305, (2011)
Synthesis of a series of aromatic benziporphyrins and heteroanalogues via tripyrrane-like intermediates derived from resorcinol and 2-methylresorcinol
Timothy David Lash, Kae Miyake, Linlin Xu, Gregory M. Ferrence.
Journal of Organic Chemistry, 76 (6295-6308), (2011)
Synthesis of a series of aromatic benziporphyrins and heteroanalogues via tripyrrane-like intermediates derived from resorcinol and 2-methylresorcinol.
Timothy David Lash, K Miyake, L Xu, Gregory Ferrence.
The Journal of organic chemistry, 76 (15), 6295-308, (2011), 10.1021/jo201098c
Synthesis of indenoporphyrins, highly modified porphyrins with reduced diatropic characteristics
Timothy David Lash, Breland E. Smith, Michael J. Melquist, Bradley A. Godfrey.
Journal of Organic Chemistry, 76 (13), 5335-5345, (2011)
Synthesis of indenoporphyrins, highly modified porphyrins with reduced diatropic characteristics.
Timothy David Lash, B E Smith, M J Melquist, B A Godfrey.
The Journal of organic chemistry, 76 (13), 5335-45, (2011), 10.1021/jo2006895
Unexpected alkyl group migration in palladium(II) benzocarbaporphyrins
Timothy David Lash.
Organic Letters, 13 (17), 4632-4635, (2011)
Unexpected alkyl group migration in palladium(II) benzocarbaporphyrins.
Timothy David Lash.
Organic letters, 13 (17), 4632-5, (2011), 10.1021/ol2018483
Association of acenaphthoporphyrins to liposomes for the photodynamic treatment of leishmaniasis
D. M. Gardner, V. M. Taylor, David Cedeno, S. Padhee, S. M. Robledo, Marjorie Jones, Timothy David Lash.
Photochemistry and Photobiology, 86, 645-652, (2010)
Association of acenaphthoporphyrins with liposomes for the photodynamic treatment of leishmaniasis.
D M Gardner, V M Taylor, D L Cedeño, S Padhee, S M Robledo, Marjorie Jones, Timothy David Lash, I D Vélez.
Photochemistry and photobiology, 86 (3), 645-52, (2010), 10.1111/j.1751-1097.2010.00705.x
Normal and abnormal heme biosynthesis. 6. Synthesis and metabolism of a series of monovinylporphyrinogens related to harderoporphyrinogen. Further insights into the oxidative decarboxylation of porphyrinogen substrates by coproporphyrinogen oxidase.
Timothy David Lash, U N Mani, A S Keck, Marjorie Jones.
The Journal of organic chemistry, 75 (10), 3183-92, (2010), 10.1021/jo100083t
Normal and abnormal heme biosynthesis. Part 6. Synthesis and metabolism of a series of monovinylporphyrinogens related to harderoporphyrinogen. Further insights into the oxidative decarboxylation of porphyrinogen substrates by coproporphyrinogen oxidase
Timothy David Lash, Ukti Mani, Anna-Sigrid Keck, Marjorie Jones.
Journal of Organic Chemistry, 75, 3183-3192, (2010)
Porphyrin on a half-shell! Synthesis and characterization of corannulenenoporphyrins
Holly Boedigheimer, Gregory M. Ferrence, Timothy David Lash.
Journal of Organic Chemistry, 75, 2518-2527, (2010), 10.1021/jo902592u
Porphyrin on a half-shell! Synthesis and characterization of corannulenoporphyrins.
H Boedigheimer, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 75 (8), 2518-27, (2010), 10.1021/jo902592u
Porphyrins with exocyclic rings. Part 24. Synthesis and spectroscopic properties of pyrenoporphyrins, potential building blocks for porphyrin molecular wires
V. Gandhi, M. L. Thompson, Timothy David Lash.
Tetrahedron, 66, 1787-1799, (2010), 10.1016/j.tet.2010.01.046
“Porphyrins with exocyclic rings. Part 25. Synthesis of porphyrins with fused cyclic ether subunits from tetrahydro-4H-pyan-4-one
B. E. Smith, Timothy David Lash.
Tetrahedron, 66(25), 4413-4422, (2010)
Preparation of furan and thiophene-derived fulvene dialdehydes: synthesis and structural characterization of a 22-oxa-21-carbaporphyrin and a related palladium(II) organometallic complex
Pankaj Jain, Gregory M. Ferrence, Timothy David Lash.
Journal of Organic Chemistry, 75, 6563-6573, (2010), 10.1021/jo101310m
Preparation of furan and thiophene-derived fulvene dialdehydes: synthesis and structural characterization of a 22-oxa-21-carbaporphyrin and a related palladium(II) organometallic complex.
P Jain, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 75 (19), 6563-73, (2010), 10.1021/jo101310m
Synthesis and characterization of tetraphenyl-21,23-dideazaporphyrin. The best evidence yet that porphyrins really are the [18]annulenes of nature
Timothy David Lash, Sarah A. Jones, Gregory M. Ferrence.
Journal of the American Chemical Society, 132, 12786-12787, (2010), 10.1021/ja105146a
Synthesis and characterization of tetraphenyl-21,23-dideazaporphyrin: the best evidence yet that porphyrins really are the [18]annulenes of nature.
Timothy David Lash, S A Jones, Gregory Ferrence.
Journal of the American Chemical Society, 132 (37), 12786-7, (2010), 10.1021/ja105146a
Formation of stable fulvene and difulvene aldehydes from benzaldehydes and an indene-derived enamine: preparation of novel indene fused benzodiazepines and attempted syntheses of di- and tricarbaporphyrinoid systems
Timothy D Lash, R N Davis.
Tetrahedron, 65 (48), 9935-9943, (2009)
Improved syntheses of meso-tetraarylbenziporphyrins and observations of substituent effects on the diatropic characteristics of these formally nonaromatic carbaporphyrinoids
Timothy David Lash.
Tetrahedron, 65 (46), 9527-9535, (2009)
MacDonald-type reactions using bis-acrylaldehydes: synthesis of an expanded sapphyrin and vinylogous hexaphyrins.
Z Zhang, Gregory Ferrence, Timothy David Lash.
Organic letters, 11 (6), 1249-52, (2009), 10.1021/ol802945s
Synthesis of a tetraazulene porphodimethene analogue.
Timothy David Lash, J A El-Beck, D A Colby.
The Journal of organic chemistry, 74 (22), 8830-3, (2009), 10.1021/jo901959k
adj-Diazuliporphyrins, a new family of dicarbaporphyrinoids with unprecedented mesoionic characteristics.
Z Zhang, Gregory Ferrence, Timothy David Lash.
Organic letters, 11 (1), 101-4, (2009), 10.1021/ol802406f
Adding to the confusion! Synthesis and metalation of pyrazole analogues of the porphyrins.
Timothy David Lash, A M Young, A L Von Ruden, Gregory Ferrence.
Chemical communications (Cambridge, England), (47), 6309-11, (2008), 10.1039/b816057k
Carbaporphyrin ketals as potential agents for a new photodynamic therapy treatment of leishmaniasis
Justin B Morgenthaler, Steven Peters, David Cedeno, Manuel H Constantino, Kevin Andrew Edwards, Erin M Kamowski, Jennifer C Passini, Brian E Butkus, Alexandra M Young, Timothy David Lash, Marjorie Jones.
Bioorganic & Medicinal Chemistry, 16, 7033-7038, (2008)
Carbaporphyrin ketals as potential agents for a new photodynamic therapy treatment of leishmaniasis.
J B Morgenthaler, Steven Peters, D L Cedeño, M H Constantino, Kevin Andrew Edwards, E M Kamowski, J C Passini, B E Butkus, A M Young, Timothy David Lash, Marjorie Jones.
Bioorganic & medicinal chemistry, 16 (14), 7033-8, (2008), 10.1016/j.bmc.2008.05.037
Metalation of carbaporphyrinoid systems
Timothy D. Lash.
Macroheterocycles, 1 (1), 9-20, (2008)
Synthesis and reactivity of N-methyl and N-phenyl meso-unsubstituted N-confused porphyrins.
Timothy David Lash, A L Von Ruden.
The Journal of organic chemistry, 73 (23), 9417-25, (2008), 10.1021/jo802040q
Use of di- and tripropionate substrate analogs to probe the active site of human recombinant coproporphyrinogen oxidase.
J B Morgenthaler, R L Barto, Timothy David Lash, Marjorie Jones.
Medical science monitor : international medical journal of experimental and clinical research, 14 (1), BR1-7, (2008)
Aromatic and nonaromatic pyriporphyrins.
Timothy David Lash, K Pokharel, J M Serling, V R Yant, Gregory Ferrence.
Organic letters, 9 (15), 2863-6, (2007), 10.1021/ol071052x
Fulvene dialdehyde strategy for adj-dicarbaporphyrinoid synthesis: preparation of a 22-carbaazuliporphyrin.
Timothy David Lash, D A Colby, Aparna Idate, R N Davis.
Journal of the American Chemical Society, 129 (45), 13800-1, (2007), 10.1021/ja076414a
Investigation of the catalytic and structural roles of conserved histidines of human coproporphyrinogen oxidase using site-directed mutagenesis
Timothy D Lash, S J Gitter, C L Cooper, Jon A Friesen, Marjorie A Jones.
Medical Science Monitor, 13 (1), Medical Science Monitor, (2007)
Porphyrins with Exocyclic Rings. Part 22. Synthesis of Deoxophylloerythroetioporphyrin (DPEP), Three Ring Homologues, and Five Related Nonpolar Bacteriopetroporphyrins Using a Western Ring Closure and an Improved b-Bilene Methodology
Timothy D Lash, Wei Li, Desiree M Quizon-Colquitt.
Tetrahedron, 63 (50), 12324-12342, (2007)
Porphyrins with exocyclic rings. Part 23. Synthesis of porphyrins with large exocyclic rings: cyclohexadeca[b]pyrroles and porphyrins therefrom
Timothy D Lash, Thomas G Marron.
Tetrahedron, 63 (50), 12343-12351, (2007)
Recent advances on the synthesis and chemistry of carbaporphyrins and related porphyrinoid systems
Timothy D Lash.
European Journal of Organic Chemistry, (33), 5461-5481, (2007)
Role of aspartate 400, arginine 262, and arginine 401 in the catalytic mechanism of human coproporphyrinogen oxidase.
J R Stephenson, J A Stacey, J B Morgenthaler, Jon Friesen, Timothy David Lash, Marjorie Jones.
Protein science : a publication of the Protein Society, 16 (3), 401-10, (2007), 10.1110/ps.062636907
Syntheses and reactivity of meso-unsubstituted azuliporphyrins derived from 6-tert-butyl- and 6-phenylazulene.
Timothy David Lash, J A El-Beck, Gregory Ferrence.
The Journal of organic chemistry, 72 (22), 8402-15, (2007), 10.1021/jo701523s
Synthesis and Reactivity of 23-tert-Butyl- and 23-Phenyltetraaryl-azuliporphyrins: an Analysis of the Effect of Bulky Substituents on Oxidative Ring Contractions to Benzocarbaporphyrins
Timothy D Lash, Jessica A El-Beck.
European Journal of Organic Chemistry, (24), 3981-3990, (2007)
Tetraaryldimethoxybenziporphyrins. At the edge of carbaporphyrinoid aromaticity.
Timothy David Lash, J T Szymanski, Gregory Ferrence.
The Journal of organic chemistry, 72 (17), 6481-92, (2007), 10.1021/jo070947k
Synthesis of aromatic dicarbaporphyrinoids from resorcinol and 2-methyl-resorcinol
Timothy D Lash, Linlin Xu.
Tetrahedron Letters, 47 (50), 8863-8866, (2006)
Tetraphenyloxybenziporphyrin, a new organometallic ligand for silver(III) and gold(III).
J A El-Beck, Timothy David Lash.
Organic letters, 8 (23), 5263-6, (2006), 10.1021/ol062108a
[22]Porphyrin-(3.1.1.3), a new vinylogous expanded porphyrin system.
L Xu, Gregory Ferrence, Timothy David Lash.
Organic letters, 8 (22), 5113-6, (2006), 10.1021/ol062043b
Kinetic evaluation of human cloned coproporphyrinogen oxidase using a ring isomer of the natural substrate.
C L Cooper, Timothy David Lash, Marjorie Jones.
Medical science monitor : international medical journal of experimental and clinical research, 11 (11), BR420-5, (2005)
Metabolism of pentacarboxylate porphyrinogens by highly purified human coproporphyrinogen oxidase: further evidence for the existence of an abnormal pathway for heme biosynthesis.
C L Cooper, C M Stob, Marjorie Jones, Timothy David Lash.
Bioorganic & medicinal chemistry, 13 (22), 6244-51, (2005), 10.1016/j.bmc.2005.06.051
Normal and Abnormal Heme Biosynthesis. Part 4. Molecular Dynamics Simulations of Coproporphyrinogen-III and Related Di- and Tricarboxylic Acids
Timothy D Lash, J He, T A Kaprak, Marjorie A Jones.
Journal of Porphyrins and Phthalocyanines, 9 (3), 170-185, (2005)
Porphyrins with Exocyclic Rings. Part 19. Efficient Syntheses of Phenanthrolinoporphyrins
Timothy D Lash, Y Lin, B H Novak, M D Parikh.
Tetrahedron, 61 (49), 11601-11614, (2005)
Porphyrins with Exocyclic Rings. Part 20. Synthesis and spectroscopic characterization of porphyrins with fused 2,1,3-benzoxadiazole and 2,1,3-benzoselenadiazole moieties
Timothy D Lash, C M Cillo.
Tetrahedron, 61 (49), 11615-11627, (2005)
Porphyrins with Exocyclic Rings. Part 21. Influence of pyrrolic and carbocyclic ring alkyl substituents on the synthesis of porphyrins bearing six-membered exocyclic Rings
Timothy D Lash, Craig M Shiner.
Tetrahedron, 61 (49), 11628-11640, (2005)
Syntheses of per-15N labeled etioporphyrins I-IV and a related tetrahydro-benzoporphyrin for applications in organic geochemistry and vibrational spectroscopy
Timothy D Lash, S Chen.
Tetrahedron, 61 (49), 11577-11600, (2005)
Synthesis of isomeric angularly annealed dinaphthoporphyrin systems: examination of the relative positioning and orientation of ring fusion as factors influencing the porphyrin chromophore.
J M Manley, T J Roper, Timothy David Lash.
The Journal of organic chemistry, 70 (3), 874-91, (2005), 10.1021/jo040269r
The enigma of coproporphyrinogen oxidase: how does this unusual enzyme carry out oxidative decarboxylations to afford vinyl groups?
Timothy David Lash.
Bioorganic & medicinal chemistry letters, 15 (20), 4506-9, (2005), 10.1016/j.bmcl.2005.07.010
An effective chromatographic separation of chicken red blood cell coproporphyrinogen oxidase and uroporphyrinogen decarboxylase, two enzymes in heme biosynthesis.
Marjorie Jones, M Taneja, Y Xu, W Chung, C M Stob, Timothy David Lash.
Bioorganic & medicinal chemistry letters, 14 (22), 5559-64, (2004), 10.1016/j.bmcl.2004.08.065
Benzo[1,2-c:3,4- c’]bis-2,1,3-selenadiazole, [1,2,5]selenadiazolo[3,4-e]-2,1,3-benzothiadiazole, furazanobenzo-2,1,3-thiadiazole, furazanobenzo-2,1,3-selenadiazole and related heterocyclic systems
Timothy D Lash, C M Cillo.
Journal of Heterocyclic Chemistry, 41 (6), 955-962, (2004)
Carbaporphyrinoid chemistry has a silver lining! Silver(III) oxybenzi-, oxynaphthi-, tropi- and benzocarbaporphyrins
Timothy D Lash, Jane M Rasmussen, Katrina M Bergman, Denise A Colby.
Organic Letters, 6, 549-552, (2004), 10.1021/ol0363265
Carbaporphyrinoid chemistry has a silver lining! silver(III) oxybenzi-, oxynaphthi-, tropi-, and benzocarbaporphyrins.
Timothy David Lash, J M Rasmussen, K M Bergman, D A Colby.
Organic letters, 6 (4), 549-52, (2004), 10.1021/ol0363265
New Riches in Carbaporphyrin Chemistry: Silver and Gold Organometallic Complexes of Benzocarbaporphyrins
Timothy D Lash, Denise A Colby, Lisa F Szczepura.
Inorganic Chemistry, 43, 5258-5267, (2004), 10.1021/ic0400540
New Riches in Carbaporphyrin Chemistry: Silver and Gold Organometallic Complexes of Benzoporphyrins
Timothy David Lash, D. A. Colby, Lisa F Szczepura.
Inorganic Chemistry, 43, 5258-5267, (2004)
New riches in carbaporphyrin chemistry: silver and gold organometallic complexes of benzocarbaporphyrins.
Timothy David Lash, D A Colby, Lisa F Szczepura.
Inorganic chemistry, 43 (17), 5258-67, (2004), 10.1021/ic0400540
Oxidative Metalation of Azuliporphyrins with Copper(II) Salts: Formation of a Porphyrin Analogue System with a Unique Fully Conjugated Nonaromatic Azulene Subunit
Timothy D Lash, Denise A Colby, Gregory M Ferrence.
Angewandte Chemie International Edition, 43, 1346-1349, (2004), 10.1002/anie.200353189
Oxidative metalation of azuliporphyrins with copper(II) salts: formation of a porphyrin analogue system with a unique fully conjugated nonaromatic azulene subunit.
D A Colby, Gregory Ferrence, Timothy David Lash.
Angewandte Chemie (International ed. in English), 43 (11), 1346-9, (2004), 10.1002/anie.200353189
Oxybenziporphyrins, Oxypyriporphyrins, Benzocarbaporph-yrins and their 23-Oxa- and 23-Thia-Analogues: Synthesis, Spectroscopic Characterization, Metalation, and Structural Characterization of a Palladium(II) Organometallic Derivative
Timothy D Lash, Dachun Liu, Gregory M Ferrence.
Journal of Organic Chemistry, 69, 6079-6093, (2004), 10.1021/jo040180l
Oxybenziporphyrins, oxypyriporphyrins, benzocarbaporphyrins, and their 23-oxa and 23-thia analogues: synthesis, spectroscopic characterization, metalation, and structural characterization of a palladium(II) organometallic derivative.
D Liu, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 69 (18), 6079-93, (2004), 10.1021/jo040180l
Preparation of Tripyrrane Analogues from Resorcinol and 2-Methylresorcinol for Applications in the Synthesis of New Benziporphyrin Systems
Timothy D Lash, Kae Miyake.
Chemical Communications, 178-179, (2004), 10.1039/b313229n
Preparation of tripyrrane analogues from resorcinol and 2-methylresorcinol for applications in the synthesis of new benziporphyrin systems.
K Miyake, Timothy David Lash.
Chemical communications (Cambridge, England), (2), 178-9, (2004), 10.1039/b313229n
Synthesis of Sapphyrins, Heterosapphyrins and Carbasapphyrins by a “4 + 1” Approach
Timothy D Lash, Daniel T Richter.
Journal of Organic Chemistry, 69, 8842-8850, (2004), 10.1021/jo040239o
Synthesis of sapphyrins, heterosapphyrins, and carbasapphyrins by a "4 + 1" approach.
D T Richter, Timothy David Lash.
The Journal of organic chemistry, 69 (25), 8842-50, (2004), 10.1021/jo040239o
Synthesis, Spectroscopy and Reactivity of meso-Unsubstituted Azuliporphyrins and their Heteroanalogues. Oxidative Ring Contractions to Carba-, Oxacarba-, Thiacarba- and Selenacarbaporphyrins
Timothy David Lash, Denise A Colby, Shelley R Graham, Sun T Chaney.
Journal of Organic Chemistry, 69, 8851-8864, (2004)
Tropiporphyrins, Cycloheptatrienyl Analogues of the Porphyrins: Synthesis, Spectroscopy, Chemistry and Structural Characterization of a Silver(III) Derivative
Timothy D Lash, Katrina M Bergman, Gregory M Ferrence.
Journal of Organic Chemistry, 69, 7888-7897, (2004), 10.1021/jo040213x
Tropiporphyrins, cycloheptatrienyl analogues of the porphyrins: synthesis, spectroscopy, chemistry, and structural characterization of a silver(III) derivative.
K M Bergman, Gregory Ferrence, Timothy David Lash.
The Journal of organic chemistry, 69 (23), 7888-97, (2004), 10.1021/jo040213x
Use of substrate analogues to develop a model for the substrate selectivity of the enzyme coproporphyrinogen oxidase
Timothy D Lash, Marjorie A Jones.
Current Topics in Biotechnology, 1, 15-27, (2004)
Comparison of Two Assay Methods for Activities of Uroporphyrinogen Decarboxylase and Coproporphyrinogen Oxidase
Timothy D Lash, Pornlert Thientanavanich, Melissa D Anderson, Marjorie A Jones.
Journal of Biochemical and Biophysical Methods, 55, 241-249, (2003), 10.1016/S0165-022X(03)00078-2
Comparison of two assay methods for activities of uroporphyrinogen decarboxylase and coproporphyrinogen oxidase.
Marjorie Jones, P Thientanavanich, M D Anderson, Timothy David Lash.
Journal of biochemical and biophysical methods, 55 (3), 241-9, (2003)
Conjugated Macrocycles Related to the Porphyrins. Part 25. 1H NMR Spectroscopic Evidence for a Preferred [18]Annulene Substructure in Carbaporphyrins from the Magnitude of Selected 4JHH CH=C-CH3 Coupling Constants
Timothy D Lash, Dachun Liu.
Journal of Organic Chemistry, 68, 1755-1761, (2003), 10.1021/jo020703u
Conjugated macrocycles related to the porphyrins. 25. Proton NMR spectroscopic evidence for a preferred [18]annulene substructure in carbaporphyrins from the magnitude of selected 4J(H,H) CH=C-CH3 coupling constants.
D Liu, Timothy David Lash.
The Journal of organic chemistry, 68 (5), 1755-61, (2003), 10.1021/jo020703u
Dimethoxytetraphenylbenziporphyrins
Timothy D Lash, Joseph T Szymanski.
Tetrahedron Letters, 44, 8613-8616, (2003), 10.1016/j.tetlet.2003.09.051
Further Studies on the Synthesis of meso-Tetraaryl-azuliporphyrins under Lindsey-Rothemund Reaction Conditions and Their Conversion into Benzocarbaporphyrins
Timothy D Lash, Denise A Colby, Gregory M Ferrence.
European Journal of Organic Chemistry, 4533-4548, (2003), 10.1002/ejoc.200300530
Organometallic Chemistry of Azuliporphyrins: Synthesis, Spectroscopy, Electrochemistry and Structural Characterization of Nickel(II), Palladium(II) and Platinum(II) Complexes of Azuliporphyrins
Timothy D Lash, Denise A Colby, Shelley R Graham, Gregory M Ferrence, Lisa F Szczepura.
Inorganic Chemistry, 42, 7326-7338, (2003), 10.1021/ic030166b
Organometallic Chemistry of Azuliporphyrins: Synthesis, Spectroscopy, Electrochemistry, and Structural Characterization of Nickel(II), Palladium(II), and Platinum(II) Complexes of Azuliporphyrins
Timothy David Lash, D. A. Colby, S. R. Graham, Gregory Ferrence, Lisa F Szczepura.
Inorganic Chemistry, 42, 7326-7338, (2003)
Organometallic chemistry of azuliporphyrins: synthesis, spectroscopy, electrochemistry, and structural characterization of nickel(II), palladium(II), and platinum(II) complexes of azuliporphyrins.
Timothy David Lash, D A Colby, S R Graham, Gregory Ferrence, Lisa F Szczepura.
Inorganic chemistry, 42 (22), 7326-38, (2003), 10.1021/ic030166b
Regioselective Oxidation of Benzocarbaporphyrins with Ferric Chloride: A Facile Synthesis of Bridged [18]Annulene Ketals with Strong Absorptions in the Far Red and an Unexpected Halogenation Reaction at the Interior Carbon Atom
Timothy D Lash, Melanie A Muckey, Michael J Hayes, Dachun Liu, John D Spence, Gregory M Ferrence.
Journal of Organic Chemistry, 68, 8558-8570, (2003), 10.1021/jo030127h
Regioselective oxidations of benzocarbaporphyrins with ferric chloride: a facile synthesis of bridged [18]annulene ketals with strong absorptions in the far red and an unexpected halogenation reaction at the interior carbon atom.
Timothy David Lash, M A Muckey, M J Hayes, D Liu, J D Spence, Gregory Ferrence.
The Journal of organic chemistry, 68 (22), 8558-70, (2003), 10.1021/jo030127h
Tert-butyl-substituted tripyrranes: insights into the steric and conformational factors that influence porphyrinoid ring formation in the "3 + 1" methodology.
W Jiao, Timothy David Lash.
The Journal of organic chemistry, 68 (10), 3896-901, (2003), 10.1021/jo0207628
Total Synthesis of the Porphyrin Mineral Abelsonite and Related Petro-porphyrins with Five-membered Exocyclic Rings
Timothy D Lash, Bo Zhang.
Tetrahedron Letters, 44, 7253-7256, (2003), 10.1016/j.tetlet.2003.08.007
tert-Butyl Substituted Tripyrranes: Insights into the Steric and Conformational Factors that Influence Porphyrinoid Ring Formation in the “3 + 1” Methodology
Timothy D Lash, Wenhua Jiao.
Journal of Organic Chemistry, 68, 3896-3901, (2003), 10.1021/jo0207628
Adaptation of the Rothemund Reaction for Carbaporphyrin Synthesis: Preparation of meso-Tetraphenylazuliporphyrin and Related Benzocarbaporphyrins
Timothy D Lash, Denise A Colby.
Chemistry - A European Journal, 8, 5397-5402, (2002)
Adaptation of the Rothemund reaction for carbaporphyrin synthesis: preparation of meso-tetraphenylazuliporphyrin and related benzocarbaporphyrins.
D A Colby, Timothy David Lash.
Chemistry (Weinheim an der Bergstrasse, Germany), 8 (23), 5397-402, (2002), 10.1002/1521-3765(20021202)8:23<5397::AID-CHEM5397>3.0.CO;2-D
An azulene analogue of the tripyrranes and carbaporphyrinoids therefrom.
S R Graham, D A Colby, Timothy David Lash.
Angewandte Chemie (International ed. in English), 41 (8), 1371-4, (2002)
Azulene analogues of tripyrranes and carbaporphyrinoids therefrom
Timothy D Lash, Shelley R Graham, Denise A Colby.
Angewandte Chemie International Edition, 41, 1371-1374, (2002), 10.1002/1521-3773(20020415)41:8<1371::AID-ANIE1371>3.0.CO;2-Q
Calix[4]azulene
Timothy D Lash, Denise A Colby.
Journal of Organic Chemistry, 67, 1031-1033, (2002)
Calix[4]azulene.
D A Colby, Timothy David Lash.
The Journal of organic chemistry, 67 (3), 1031-3, (2002)
Conjugated Macrocycles Related to the Porphyrins. Part 21. Synthesis, Spectroscopy, Electrochemistry and Structural Characterization of Carbaporphyrins
Timothy D Lash, Michael J Hayes, John D Spence, Melanie A Muckey, Gregory M Ferrence, Lisa F Szczepura, .
Journal of Organic Chemistry, 67, 4860-4874, (2002), 10.1021/jo020267b
Conjugated macrocycles related to the porphyrins. 21. Synthesis, spectroscopy, electrochemistry, and structural characterization of carbaporphyrins.
Timothy David Lash, M J Hayes, J D Spence, M A Muckey, Gregory Ferrence, Lisa F Szczepura.
The Journal of organic chemistry, 67 (14), 4860-74, (2002)
Fingerprinting petroporphyrin structures with vibrational spectroscopy. Part 6. Resonance Raman characterization of regioisomers of nickel(II) benzoetioporphyrin
Timothy D Lash, James M Boggess, Roman S Czernuszewicz.
Organic Geochemistry, 33, 1111-1126, (2002), 10.1016/S0146-6380(02)00055-4
Kinetic Studies of Novel Di- and Tri-propionate Substrates for the Chicken Red Blood Cell Enzyme Coproporphyrinogen Oxidase
Timothy D Lash, Jingyuan He, Marjorie A Jones.
Journal of Biochemistry, 131, 201-205, (2002)
Kinetic studies of novel di- and tri-propionate substrates for the chicken red blood cell enzyme coproporphyrinogen oxidase.
Marjorie Jones, J He, Timothy David Lash.
Journal of biochemistry, 131 (2), 201-5, (2002)
Metabolism of Analogues of Coproporphyrinogen-III with Modified Side Chains: Implications for Binding at the Active Site of Coproporphyrinogen Oxidase
Timothy D Lash, Todd A Kaprak, Lan Shen, Marjorie A Jones.
Bioorganic & Medicinal Chemistry Letters, 12, 181-186, (2002), 10.1016/S0960-894X(01)00774-0
Metabolism of analogues of coproporphyrinogen-III with modified side chains: implications for binding at the active site of coproporphyrinogen oxidase.
Timothy David Lash, T A Kaprak, L Shen, Marjorie Jones.
Bioorganic & medicinal chemistry letters, 12 (3), 451-6, (2002)
Organometallic Chemistry of Carbaporphyrinoids: Synthesis and Characterization of Nickel(II) and Palladium(II) Azuliporphyrins
Timothy D Lash, Shelley R Graham, Gregory M Ferrence.
Chemical Communications, 894-895, (2002), 10.1039/b200131b
Organometallic chemistry of carbaporphyrinoids: synthesis and characterization of nickel(II) and palladium(II) azuliporphyrins.
S R Graham, Gregory Ferrence, Timothy David Lash.
Chemical communications (Cambridge, England), (8), 894-5, (2002)
Silver(III) Carbaporphyrins: The First Organometallic Complexes of True Carbaporphyrins
Timothy D Lash, Melanie A Muckey.
Inorganic Chemistry, 41, 4840-4842, (2002), 10.1021/ic020285b
Silver(III) carbaporphyrins: the first organometallic complexes of true carbaporphyrins.
M A Muckey, Lisa F Szczepura, Gregory Ferrence, Timothy David Lash.
Inorganic chemistry, 41 (19), 4840-2, (2002)
Synthesis, Spectroscopy and Metallation of Mixed Carbaporphyrinoid Systems
Timothy D Lash, Dachun Liu.
Chemical Communications, 2426-2427, (2002), 10.1039/b206276n
Synthesis, Spectroscopy, Electrochemistry, and Structural Characterization of Carbaporphyrins
Timothy David Lash, M. J. Hayes, J. D. Spence, M. A. Muckey, Gregory Ferrence, Lisa F Szczepura.
J. Org. Chem., 67, 4860-4874, (2002)
Synthesis, spectroscopy and metallation of mixed carbaporphyrinoid systems.
D Liu, Timothy David Lash.
Chemical communications (Cambridge, England), (20), 2426-7, (2002)
Unprecedented Overmetabolism of a Porphyrinogen Substrate by Coproporphyrinogen Oxidase
Timothy D Lash, Anna-Sigrid I M Keck, Ukti N Mani, Marjorie A Jones.
Bioorganic & Medicinal Chemistry Letters, 12, 1079-1082, (2002), 10.1016/S0960-894X(02)00097-5
Unprecedented overmetabolism of a porphyrinogen substrate by coproporphyrinogen oxidase.
Timothy David Lash, A S Keck, U N Mani, Marjorie Jones.
Bioorganic & medicinal chemistry letters, 12 (7), 1079-82, (2002)
Conjugated Macrocycles Related to the Porphyrins. Part 18. Synthesis and Spectroscopic Characterization of Electron-rich Benzi- and Oxybenziporphyrins: Influence of Steric and Electronic Factors on Porphyrinoid Aromaticity
Timothy D Lash, Danial T Richter.
Tetrahedron, 57, 3659-3673, (2001), 10.1016/S0040-4020(01)00256-3
Modification of the Porphyrin Chromophore by Ring Fusion: Identifying Trends due to Annelation of the Porphyrin Nucleus
Timothy D Lash.
Journal of Porphyrins and Phthalocyanines, 5, 267-288, (2001), 10.1002/jpp.313
Normal and Abnormal Heme Biosynthesis. Part 3. Synthesis and Metabolism of Tripropionate Analogs of Coproporphyrinogen-III: Novel Probes for the Active Site of Coproporphyrinogen Oxidase
Timothy D Lash, Troii Hall, Ukti N Mani, Marjorie A Jones.
Journal of Organic Chemistry, 66, 3753-3759, (2001), 10.1021/jo001697+
Normal and abnormal heme biosynthesis. 3.(1)Synthesis and metabolism of tripropionate analogues of coproporphyrinogen-III: novel probes for the active site of coproporphyrinogen oxidase.
Timothy David Lash, T Hall, U N Mani, Marjorie Jones.
The Journal of organic chemistry, 66 (11), 3753-9, (2001)
Palladium (II) complexes of oxybenziporphyrin.
M Stepień, L Latos-Grazyński, Timothy David Lash, L Szterenberg.
Inorganic chemistry, 40 (27), 6892-900, (2001)
Palladium(II) complexes of Oxybenziporphyrin
Timothy D Lash, Lechoslaw Latos-Grazynski, Marcin Stepien, Ludmila Szterenberg.
Inorganic Chemistry, 40, 6892-6900, (2001), 10.1021/ic010394a
Porphyrins with Exocyclic Rings. Part 16. Synthesis and Spectroscopic Characterization of Fluoranthoporphyrins, a New Class of Highly Conjugated Porphyrin Chromophores
Timothy D Lash, Tonya M Werner, Michelle L Thompson, Jerad M Manley.
Journal of Organic Chemistry, 66, 3152-3159, (2001), 10.1021/jo010066s
Porphyrins with exocyclic rings. 16. Synthesis and spectroscopic characterization of fluoranthoporphyrins, a new class of highly conjugated porphyrin chromophores.
Timothy David Lash, T M Werner, M L Thompson, J M Manley.
The Journal of organic chemistry, 66 (9), 3152-9, (2001)
Carbaporphyrinoids: Taking the Heterocycle Out of Nature’s [18]Annulene
Timothy D Lash.
SynLett, 279-295, (2000), 10.1055/s-2000-6512
Giant Porphyrinoids: From Figure Eights to Nanomolecular Cavities.
Timothy David Lash.
Angewandte Chemie (International ed. in English), 39 (10), 1763-1767, (2000)
Giant Porphyrinoids: From Figure-Eights to Nanomolecular Cavities
Timothy D Lash.
Angewandte Chemie International Edition, 39, 1763-1767, (2000), 10.1002/(SICI)1521-3773(20000515)39:10<1763::AID-ANIE1763>3.0.CO;2-3
Porphyrins with Exocyclic Rings. Part 14. Synthesis of Tetraace-naphthoporphyrins, a New Family of Highly Conjugated Porphyrins with Record Breaking Long Wavelength Electronic Absorptions
Timothy D Lash, John D Spence.
Journal of Organic Chemistry, 65, 1530-1539, (2000), 10.1021/jo991730w
Porphyrins with exocyclic rings. 14. Synthesis of tetraacenaphthoporphyrins, a new family of highly conjugated porphyrins with record-breaking long-wavelength electronic absorptions.
J D Spence, Timothy David Lash.
The Journal of organic chemistry, 65 (5), 1530-9, (2000)
Porphyrins with exocyclic rings. 15.(1) synthesis of quino- and isoquinoporphyrins, aza analogues of the naphthoporphyrins.
Timothy David Lash, V Gandhi.
The Journal of organic chemistry, 65 (23), 8020-6, (2000)
Porphyrins with exocyclic rings. Part 15. Synthesis of quino- and isoquinoporphyrins, aza analogues of the naphthoporphyrins
Timothy D Lash, Viraj Gandhi.
Journal of Organic Chemistry, 65, 8020-8026, (2000), 10.1021/jo001216m
Surfactant-Enhanced Partitioning of Nickel and Vanadyl Deoxophylloerythroetioporphyrins from Crude Oil into Water and Their Analysis Using Surface-Enhanced Resonance Raman Spectroscopy
Timothy D Lash, Joseph R Stencel, Roman S Czernuszewicz, Peter R Jaffé, Ricardo Cantú, .
Environmental Science & Technology, 34, 192-198, (2000), DOI: 10.1021/es990213s
Synthesis of Novel Pyrrolic Compounds from Nitroarenes and Isocyanoacetates Using a Phosphazene Superbase
Timothy D Lash, Michelle L Thompson, Tonya M Werner, John D Spence.
SynLett, 213-216, (2000), 10.1055/s-2000-6504
Synthesis of the chlorin macrocycle by the “3 + 1” approach
Timothy D Lash, Dong C Shi, Dennis H Burns.
Chemical Communications, 299-300, (2000), 10.1039/a908784b
New application for expanded porphyrins: Sapphyrin and heterosapphyrins as inhibitors of Leishmania parasites
J. D. Hooker, V. H. Nguyen, V. M. Taylor, David Cedeno, Timothy David Lash, Marjorie Jones, S. M. Robledo, I. D. Velez.
Photochemistry and Photobiology

Presentations

Dicarbaporphyrins and beyond: the quest for quatyrin
Timothy D Lash.
25th Biennial Congress of the International Society of Heterocyclic Chemistry, Santa Barbara, CA, August, 2018
Out of the Blue! Azuliporphyrins and Related Azulene-containing Porphyrinoids
Timothy D Lash.
227th Meeting of The Electrochemical Society, Chicago, January, 2017
Preparation of tripyrrane intermediates for the synthesis of N-methylbenzocarbaporphyrins
Alissa N Latham.
251st ACS National Meeting, San Diego, CA, March, 2016
Synthesis of a PAH-porphyrin hybrid
Ruixiao Gao.
251st ACS National Meeting, San Diego, CA, March, 2016
Synthesis of key intermediates for the generation of benziporphyrins
William T Darrow.
251st ACS National Meeting, San Diego, CA, March, 2016
Development of a carbatripyrrin strategy for synthesizing carbaporphyrinoid systems
Leah M Stateman.
249th ACS National Meeting, Denver, CO, March, 2015
Synthesis of neo-confused porphyrins
Arwa Almejbel.
249th ACS National Meeting, Denver, CO, March, 2015
Synthesis of rhodium(III) azuliporphyrins
Timothy D Lash, Leah M Stateman.
249th ACS National Meeting, Denver, CO, March, 2015
Synthesis of electron-rich benziporphyrin analogs
Stacy C Fosu.
247th ACS National Meeting, Normal, IL, March, 2014
Synthesis of new dicarbaporphyrinoid systems
Deyaa I AbuSalim.
247th ACS National Meeting, Dallas, TX, March, 2014
Substantial inhibitory effects of selected azuliporphyrin analogs on the growth of Leishmania cells following light treatment
Sheila Behzadi-Teshnizi, Ghislaine M. Feussom, Mari Vazquez Hernandez, Victoria H. Nguyen, Jaqueline D. Hooker, Timothy David Lash, Marjorie Jones.
241st National ACS Meeting, Anaheim, CA, March 27, 2011
Photodynamic therapy of cutaneous leishmaniasis
David Cedeno, V. M. Taylor, D. L. Munoz, S. M. Robledo, Marjorie Jones, Timothy David Lash, I. D. Velez.
ISTC Workshop, Domestic antineoplastic drugs, Moscow, Russia, March 22, 2011
Porphyrinogen with Acetate and Butyrate Side Chains as Probes for Coproporphyrinogen Oxidase
Timothy David Lash, Devyn L. Crawford, Marjorie Jones.
Sixth International Conference on Porphyrins and Phthalocyanines (ICPP-6), Santa Ana Pueblo, NM, July, 2010
Estudio in vitro de nuevos derivados porfirínicos en terapia fotodinámica como alternativa terapéutica en leishmaniasis cutánea
V. M. Taylor-Orozco, David Cedeno, D. L. Muñoz-Herrera, Marjorie Jones, Timothy David Lash, I. D. Vélez-Bernal, S. M. Robledo-Restrepo.
2nd Colombian Congress of Microbiology, Medellin, Colombia, April 28, 2010
Sapphyrins and heterosapphyrins: Potential inhibitors of Leishmania
J. D. Hooker, David Cedeno, Timothy David Lash, V. H. Nguyen, Marjorie Jones.
239th ACS National Meeting, San Francisco, CA, March 21, 2010