Toward Functional Type III [Fe]-Hydrogenase Biomimics for H2Activation: Insights from Computation
Author:
Publisher
Wiley
Subject
General Chemistry,Catalysis,Organic Chemistry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/chem.201405619/fullpdf
Reference107 articles.
1. Hydrogenases
2. A Natural Choice for Activating Hydrogen
3. Fundamentals of H2 Binding and Reactivity on Transition Metals Underlying Hydrogenase Function and H2 Production and Storage
4. Occurrence, Classification, and Biological Function of Hydrogenases: An Overview
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2. Synthetic and Structural Studies on a New Type of [Fe]‐Hydrogenase Mimics Each Containing One Hantzsch Ester Moiety;European Journal of Inorganic Chemistry;2020-07-30
3. Synthesis, characterization, and some properties of two types of new [Fe]-H2ase models containing a 4-phosphatopyridine or a 4-phosphatoguanosinepyridine moiety;New Journal of Chemistry;2020
4. A Biomimetic Model for the Active Site of [Fe]-H2ase Featuring a 2-Methoxy-3,5-dimethyl-4-phosphato-6-acylmethylpyridine Ligand;Organometallics;2019-10-28
5. Biomimetic heterobimetallic architecture of Ni(ii) and Fe(ii) for CO2 hydrogenation in aqueous media. A DFT study;RSC Advances;2019
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