Studies on the electronic structure of thiolate-bridged diiron complexes and their single-electron reduction reactions
Author:
Funder
NSFC
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference50 articles.
1. Ammonia synthesis using a stable electride as an electron donor and reversible hydrogen store
2. Ammonia Production at the FeMo Cofactor of Nitrogenase: Results from Density Functional Theory
3. Chemical Activity of the Nitrogenase FeMo Cofactor with a Central Nitrogen Ligand: Density Functional Study
4. Reduction of Dinitrogen to Ammonia at a Well-Protected Reaction Site in a Molybdenum Triamidoamine Complex
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1. Monocyclopentadienyl and Other Half-Sandwich Complexes of Iron;Reference Module in Chemistry, Molecular Sciences and Chemical Engineering;2021
2. Spectroscopic and Quantum Chemical Investigation of Benzene-1,2-dithiolate-Coordinated Diiron Complexes with Relevance to Dinitrogen Activation;Inorganic Chemistry;2019-03-25
3. Photochemical substitution of a single CO ligand of CpFe(CO)2SeC(Y)Y′Ar [(Y)Y′ = (O)O, (S)O and (S)S] by EPh3 (E = P, As, Sb);Inorganica Chimica Acta;2019-02
4. Reactivity toward Unsaturated Small Molecules of Thiolate-Bridged Diiron Hydride Complexes;Inorganic Chemistry;2018-11-28
5. Synthesis, structural characterization and conversion of dinuclear iron–sulfur clusters containing the disulfide ligand: [Cp*Fe(μ–η2:η2-bdt)(cis-μ–η1:η1-S2)FeCp*], [Cp*Fe(μ-S(C6H4S2))(cis-μ–η1:η1-S2)FeCp*], and [{Cp*Fe(bdt)}2(trans-μ–η1:η1-S2)];Dalton Transactions;2017
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