Catalytic Reduction of Molecular Dinitrogen to Ammonia and Hydrazine Using Vanadium Complexes
Author:
Affiliation:
1. Department of Systems Innovation; School of Engineering; University of Tokyo, Bunkyo-ku; Tokyo 113-8656 Japan
2. Institute for Materials Chemistry and Engineering; Kyushu University; Nishi-ku Fukuoka 819-0395 Japan
Publisher
Wiley
Subject
General Medicine
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/ange.201802310/fullpdf
Reference88 articles.
1. Late Metal Scaffolds that Activate Both, Dinitrogen and Reduced Dinitrogen Species NxHy
2. Reactivity of Dinitrogen Bound to Mid‐ and Late‐Transition‐Metal Centers
3. Expanding Boundaries: N2 Cleavage and Functionalization beyond Early Transition Metals
4. Grenzen erweitern: Spaltung und Funktionalisierung von N2 jenseits von frühen Übergangsmetallen
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3. Catalytic Reduction of Dinitrogen into Ammonia and Hydrazine by Using Chromium Complexes Bearing PCP‐Type Pincer Ligands**;Chemistry – A European Journal;2022-03-28
4. Probing the Potential of Hitherto Unexplored Base‐Stabilized Borylenes in Dinitrogen Binding;Chemistry – A European Journal;2022-03-15
5. Synthesis, crystal structure, EPR, and DFT studies of an unusually distorted vanadium(ii) complex;Dalton Transactions;2022
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