1H, 31P and 119Sn NMR studies of iridium trichlorostannate complexes
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference30 articles.
1. The Reaction of SnCl2 with the Complexescis-PtCl2 (phosphorus ligand)2 as studied by31P and195Pt NMR
2. 195Pt-NMR-Spektroskopie an katalytisch aktiven Komplexen: Extrem große Spin-Spin-Kopplung zwischen Platin und Zinn
3. Selective Transition Metal Catalysts Complexed with Triphenyl Phosphine
4. Homogeneous catalysis by platinum(II)–tin(II) chloride complex. Part 4.—Effective species for hydrogenation of ethylene catalysed by [(CH3)4N]3[Pt(SnCl3)5] in acetone
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1. Coordination of SnCl3− ligands to {Cp*M}2+ (M = Rh, Ir);Journal of Organometallic Chemistry;2014-03
2. Trichlorostannyl complexes of iridium with both P-donor and N-donor ligands: Preparation and activity as hydrogenation catalysts;Journal of Organometallic Chemistry;2009-09
3. Triamidostannates(II) as Sterically Demanding Ligands for Rhodium and Iridium;Organometallics;2008-01-19
4. Rhodium-Catalyzed Hydrogenation of Alkenes by Rhodium/Tris(fluoroalkoxy)phosphane Complexes in Fluorous Biphasic System;Advanced Synthesis & Catalysis;2003-05
5. A coordinatively flexible ligand for carbonyl clusters: bridging and terminal SnCl3groups in the iridium clusters [Ir4(CO)11(μ-SnCl3)]−, [Ir4(CO)10(SnCl3)(μ-SnCl3)]2−and [Ir6(CO)15(μ3-SnCl3)]−;Dalton Trans.;2003
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