Proton Magnetic Resonance Spectra of Metal Ammine Complexes. III. Interpretation of the Chemical Shifts in Cobalt(III) Pentaammines
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/48/3/48_3_766/_pdf
Reference8 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. I. Cobalt(III) Pentammine Series
3. The proton magnetic resonance spectra of cyclopentadiene trimers at 220 MHz
4. The crystal structure of hexamminecobalt(III) hexacyanocobaltate(III): an accurate determination
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1. Correlation of 13C, 15N and 59Co nuclear magnetic resonance chemical shifts with ligand-field parameters for pentacyanocobaltate(III) complexes;Journal of the Chemical Society, Dalton Transactions;1993
2. 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
3. 1H N.m.r. Chemical shifts and hydrogen exchange rates oftrans-[Co(en)2XY]n+ complexes in liquid ammonia;Transition Metal Chemistry;1985-05
4. Proton magnetic resonance spectra of metal ammine complexes. 17. Proton magnetic resonance study of cis-bis(ethylenediamine)cobalt(III) complexes. Assignment and deuteration of amine hydrogens and the structure of ion pairs and ion triplets;Inorganic Chemistry;1981-04
5. Application of15N NMR Spectroscopy to Studies of the Intermolecular Interaction of Biomolecules;Applied Spectroscopy Reviews;1981-01
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