Proton Magnetic Resonance Spectra of Metal Ammine Complexes. VI. Thetrans-Effect in Cobalt(III) Amine Compounds as Studied by the Rate of Hydrogen-Deuterium Exchange
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/49/2/49_2_397/_pdf
Reference22 articles.
1. Theoretical Study of Proton Chemical Shifts Induced by the Paramagnetic Anisotropy of Cobaltic Ion
2. Proton Magnetic Resonance Spectra of Metal Ammine Complexes. III. Interpretation of the Chemical Shifts in Cobalt(III) Pentaammines
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1. THE PHENOMENON OF CONGLOMERATE CRYSTALLIZATION. XXVII. THE EFFECT OF CHARGE COMPENSATING ANION ON THE CRYSTALLIZATION BEHAVIOUR OF [Co(en)2ox]-Cl·4H2O, [Co(en)2ox]Br·H2O, [Co(en)2ox]PF6 AND [Co(en)2ox]I;Journal of Coordination Chemistry;1993-09
2. The phenomenon of conglomerate crystallization. Part 34. Crystal structures of the conglomerate (–)599-K[cis-α-Λ(δλδ)-Co(edda)(No2)2] and of the racemate K[cis-α-Λ(δλδ)-Co(edda)(NO2)2]·H2O (edda = ethylenediamine-N,N′-diacetate);J. Chem. Soc., Dalton Trans.;1993
3. Hydrogen isotope exchange rates for polyamines bound to inert transition-metal complexes;Coordination Chemistry Reviews;1992-05
4. New Insights into the Mechanisms of Spontaneous and Base-Catalysed Substitution Reactions of the Inert Metal Amine Complexes;Comments on Inorganic Chemistry;1991-04
5. Nitrogen-15 NMR Chemical Shifts in Metal–Ammine Complexes. II. Cobalt(III) Ammine and Amine Complexes;Bulletin of the Chemical Society of Japan;1989-08
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