Terrence J. Collins
Affiliations: | 1981-1987 | Chemistry | California Institute of Technology, Pasadena, CA |
1988- | Chemistry | Carnegie Mellon University, Pittsburgh, PA |
Area:
Inorganic Chemistry, Environmental Engineering, Chemical EngineeringWebsite:
https://www.cmu.edu/chemistry/people/faculty/collins.htmlGoogle:
"Terrence J. Collins"Bio:
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Cross-listing: Envirotree
Parents
Sign in to add mentorWarren R. Roper | grad student | 1978 | University of Auckland | |
(Thiocarbonyl Complexes of Ruthenium and Osmium.) | ||||
James Paddock Collman | post-doc | 1978-1980 | Stanford |
Children
Sign in to add traineeWilliam J. Brittain | grad student | 1982 | Caltech |
Leonard D. Vuocolo | grad student | 2000 | Carnegie Mellon |
Sayam Sen Gupta | grad student | 2002 | Carnegie Mellon |
Yelda Hangun | grad student | 2002 | Carnegie Mellon |
Anindya Ghosh | grad student | 2004 | Carnegie Mellon |
Deboshri Banerjee | grad student | 2007 | Carnegie Mellon |
Evan S. Beach | grad student | 2007 | Carnegie Mellon |
Arani Chanda | grad student | 2007 | Carnegie Mellon |
Delia-Laura Popescu | grad student | 2007 | Carnegie Mellon |
Matthew J. Stadler | grad student | 2007 | Carnegie Mellon |
Soumen Kundu | grad student | 2012 | Carnegie Mellon |
Longzhu Q. Shen | grad student | 2013 | Carnegie Mellon |
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Publications
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Pfister T, Söhnel T, Collins TJ, et al. (2023) An Iron Macrocyclic Complex Containing Four "Hybrid" Pyridinium Amidate/Amidate N-Donors as a Catalyst for Oxidations With Hydrogen Peroxide. Chemistry (Weinheim An Der Bergstrasse, Germany). e202301548 |
Frame HC, Shen LQ, Ryabov AD, et al. (2023) On TAML Catalyst Resting State Lifetimes: Kinetic, Mechanistic, and Theoretical Insight into Phosphate-Induced Demetalation of an Iron(III) Bis(sulfonamido)bis(amido)-TAML Catalyst. Inorganic Chemistry |
Pinzón-Espinosa A, Collins TJ, Kanda R. (2021) Detoxification of oil refining effluents by oxidation of naphthenic acids using TAML catalysts. The Science of the Total Environment. 784: 147148 |
Somasundar Y, Shen LQ, Hoane AG, et al. (2020) Predicting Properties of Iron(III) TAML Activators of Peroxides from Their III/IV and IV/V Reduction Potentials or a Lost Battle to Peroxidase. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Kundu S, Shen LQ, Somasundar Y, et al. (2020) TAML- and Buffer-Catalyzed Oxidation of Picric Acid by HO: Products, Kinetics, DFT, and the Mechanism of Dual Catalysis. Inorganic Chemistry |
Somasundar Y, Lu IC, Mills MR, et al. (2020) Oxidative Catalysis by TAMLs: Obtaining Rate Constants for Non-Absorbing Targets by UV-Vis Spectroscopy. Messages to Enzymologists and Environmentalists. Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry |
Ryabov AD, Warner GR, Somasundar Y, et al. (2020) Zero-order Catalysis in TAML-catalyzed Oxidation of Imidacloprid, a Neonicotinoid Pesticide. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Weitz AC, Mills MR, Ryabov AD, et al. (2019) A Synthetically Generated LFeOH Complex. Inorganic Chemistry |
Warner GR, Somasundar Y, Jansen KC, et al. (2019) Bioinspired, Multidisciplinary, Iterative Catalyst Design Creates the Highest Performance Peroxidase Mimics and the Field of Sustainable Ultradilute Oxidation Catalysis (SUDOC) Acs Catalysis. 9: 7023-7037 |
Ellis WC, Ryabov AD, Fischer A, et al. (2018) Bis phenylene flattened 13-membered tetraamide macrocyclic ligand (TAML) for square planar cobalt(III). Journal of Coordination Chemistry. 71: 1822-1836 |