CO-ligand Photodissociation in Two Ru(II) Complexes Affected by Different Polypyridyl Supporting Ligands
Author:
Affiliation:
1. Cluster of Science and Engineering, Fukushima University, 1 Kanayagawa, Fukushima 960-1296
2. Institute of Environmental Radioactivity, Fukushima University, 1 Kanayagawa, Fukushima 960-1296
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
http://www.journal.csj.jp/doi/pdf/10.1246/cl.170550
Reference21 articles.
1. Mapping the Transformation [{RuII(CO)3Cl2}2]→[RuI2(CO)4]2+: Implications in Binuclear Water-Gas Shift Chemistry
2. Isolation of intermediates in the water gas shift reactions catalyzed by [Ru(bpy)2(CO)Cl]+ and [Ru(bpy)2(CO)2]2+
3. The water gas shift reaction: homogeneous catalysis by ruthenium and other metal carbonyls
4. A Molecular Ruthenium Electrocatalyst for the Reduction of Carbon Dioxide to CO and Formate
5. Unexpected effect of catalyst concentration on photochemical CO2 reduction by trans(Cl)–Ru(bpy)(CO)2Cl2: new mechanistic insight into the CO/HCOO− selectivity
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2. Coordination Chemistry of Ru(II) Complexes of an Asymmetric Bipyridine Analogue: Synergistic Effects of Supporting Ligand and Coordination Geometry on Reactivities;Molecules;2019-12-19
3. Solvent mediated complete trans-to-cis isomerization of [Ru(polypyridine)(CO)2Cl2] complexes;Journal of Organometallic Chemistry;2019-11
4. Coordination chemistry of mononuclear ruthenium complexes bearing versatile 1,8-naphthyridine units: Utilization of specific reaction sites constructed by the secondary coordination sphere;Coordination Chemistry Reviews;2018-11
5. 2-(Pyridin-2-yl)-1,8-naphthyridine;IUCrData;2017-08-28
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