Electronic spectra and electrochemistry of disubstituted 2,2′-bipyridinetetracarbonylmolybdenum complexes. Solvent and substituent effects
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference18 articles.
1. The nature of the lowest excited state and photosubstitution reactivity of tetracarbonyl-1,10-phenanthrolinetungsten(0) and related complexes
2. Solvent effects on the visible absorption spectra of Mo(CO)4(Bipy) and W(CO)4(Bipy)
3. Über Pyridinium-N-phenol-betaine und ihre Verwendung zur Charakterisierung der Polarität von Lösungsmitteln
4. (Diimine)carbonyl complexes of chromium, molybdenum, and tungsten: relationship between resonance Raman spectra and photosubstitution quantum yields upon excitation within the lowest metal to diimine charge-transfer band
5. Substituted 2,2′-bipyridines as ligands. preparation and characterization of 4,4′-disubstituted 2,2′-bipyridine derivatives of the hexacarbonyls of chromium, molybdenum and tungsten
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1. Stable Molybdenum(0) Carbonyl Complex for Upconversion and Photoredox Catalysis;Journal of the American Chemical Society;2023-07-21
2. Electrocatalytic CO2 reduction by M(bpy-R)(CO)4 (M = Mo, W; R = H, tBu) complexes. Electrochemical, spectroscopic, and computational studies and comparison with group 7 catalysts;Chem. Sci.;2014
3. Molybdenum 1,4-Diazabuta-1,3-diene Tricarbonyl Solvento Complexes Revisited: From Solvatochromism to Attractive Ligand–Ligand Interaction;Inorganic Chemistry;2012-03-28
4. Solvent effects on the absorption and emission of [Re(R2bpy)(CO)3X] complexes and their sensitivity to CO2 in solution;Journal of Photochemistry and Photobiology A: Chemistry;2009-05
5. Organometallic Chemistry of Polypyridine Ligands I;Advances in Heterocyclic Chemistry Volume 93;2007
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