Goutam Kumar Lahiri
Affiliations: | Chemistry | Indian Institute of Technology Bombay, Mumbai, Maharashtra, India |
Website:
http://www.chem.iitb.ac.in/~lahiri/Google:
"Goutam K. Lahiri"Mean distance: 8.33 | S | N | B | C | P |
Parents
Sign in to add mentorAnimesh Chakravorty | grad student | 1990 | IACS Kolkata |
Alan Mitchell Stolzenberg | post-doc | 1990-1993 | West Virginia University |
Children
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Publications
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Biswas M, Dey S, Dhara S, et al. (2024) Metal-ligand synergy driven functionalisation of alkylene linked bis(aldimine) on a diruthenium(II) platform. Cyclisation oxygenation. Dalton Transactions (Cambridge, England : 2003) |
Seikh L, Dhara S, Singh AK, et al. (2024) The isomer-sensitive electrochemical HER of ruthenium(II)-hydrido complexes involving redox-active azoheteroaromatics. Dalton Transactions (Cambridge, England : 2003) |
Guria S, Dolui D, Das C, et al. (2023) Energy-efficient CO/CO interconversion by homogeneous copper-based molecular catalysts. Nature Communications. 14: 6859 |
Grover J, Maji S, Teja C, et al. (2023) Base Metal Catalyst for Indirect Hydrogenation of CO. Acs Organic & Inorganic Au. 3: 299-304 |
Arya Y, Bera SK, Lahiri GK. (2023) Tetracoordinated 15-Electron Ruthenium(I) in a Discrete Triruthenium Framework. Inorganic Chemistry |
Kumari M, Dasgupta S, Panda S, et al. (2023) Unique Metal-Ligand Interplay in Directing Discrete and Polymeric Derivatives of Isomeric Azole-Carboxylate. Varying Electronic Form, C-C Coupling, and Receptor Feature. Inorganic Chemistry |
Singh B, Singh AK, Priyadarsini A, et al. (2023) Nitrogen substitution induced lattice contraction in nickel nanoparticles for electrochemical hydrogen evolution from simulated seawater. Chemical Communications (Cambridge, England) |
Singh A, Singh B, Dey S, et al. (2023) Ruthenium Azobis(benzothiazole): Electronic Structure and Impact of Substituents on the Electrocatalytic Single-Site Water Oxidation Process. Inorganic Chemistry |
Arya Y, Bera SK, Lahiri GK. (2023) Azo Appended Modified Lawsone Derived Ru-Systems with Multi-Redox Entities. Competitive Electronic Form and the Question of Azo Reduction. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Kumari M, Dey K, Bera SK, et al. (2022) Indazole-Derived Mono-/Diruthenium and Heterotrinuclear Complexes: Switchable Binding Mode, Electronic Form, and Anion Sensing Events. Inorganic Chemistry |