Synthesis, intervalence characteristics and electrochemistry of pentacarbonyl-molybdenum(0) and -tungsten(0)-μ-cyano penta-ammineruthenium(III) mixed-valence complexes
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference24 articles.
1. Mixed Valence Chemistry-A Survey and Classification
2. Heterobinuclear transition-metal complexes. Synthesis and optical metal to metal electron transfer
3. Electrochemical variational study of donor/acceptor orbital mixing and electronic coupling in cyanide-bridged mixed-valence complexes
4. Optical electron-transfer transitions in polynuclear complexes of the type X(NH3)4RuNCRu(bpy)2CNRu(NH3)4Ym+ (X = NH3, py; Y = NH3, py; m = 4-6)
5. Pentacyanoruthenate(II)-pentaammineruthenium(II/III) binuclear complexes bridged by cyanogen, cyanide, and 4,4'-bipyridine
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1. 140 H/D Isotopomers Identified by Long-Range NMR Hyperfine Shifts in Ruthenium(III) Ammine Complexes. Hyperconjugation in Ru–NH3 Bonding;Inorganic Chemistry;2013-05-23
2. Solvent and metal dependent 1H NMR hyperfine shifts in paramagnetic pentaamminemetal cyanide-bridged mixed-valence complexes;Dalton Transactions;2013
3. From Monomers to Geometry-Constrained Molecules: One Step Further Toward Cyanide Bridged Wires;Inorganic Chemistry;2009-11-06
4. Solvent dependence of the g-anisotropy in the ESR of cyanide-bridged mixed-valence complexes;Dalton Transactions;2008
5. Chemistry of Transition Metal Cyanide Compounds: Modern Perspectives;Progress in Inorganic Chemistry;2007-03-09
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