Three mononuclear octahedral cobalt(III) complexes with salicylaldimine Schiff bases: Synthesis, characterization, phenoxazinone synthase mimicking activity and DFT study on supramolecular interactions
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference93 articles.
1. The non-template synthesis of novel non-symmetrical, tetradentate Schiff bases. Their nickel(II) and cobalt(III) complexes
2. THE CRYSTAL STRUCTURE OF trans-AZIDOBIS (ACETYLACETONATO)ETHYLENEDIIMINEPYRI-DINECOBALT(III)
3. Iron and Cobalt "Lacunar" Complexes as Dioxygen Carriers
4. Dioxygen affinities of synthetic cobalt Schiff base complexes
5. Hydrogen Evolution Catalyzed by Cobaloximes
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