NITROGEN-15 CHEMICAL SHIFTS IN METAL-AMMINE COMPLEXES. I. PENTAAMMINECOBALT(III) COMPLEXES
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Reference10 articles.
1. Proton magnetic resonance spectra of pentaammine complexes of cobalt(III), rhodium(III), and iridium(III)
2. Nitrogen-15 chemical shifts in cobalt(III)-pentaammine complexes
3. Proton Magnetic Resonance Spectra of Metal Ammine Complexes. III. Interpretation of the Chemical Shifts in Cobalt(III) Pentaammines
4. Hydrogen-1, nitrogen-15, and cobalt-59 chemical shifts in several cobalt(III) complexes
5. Cobalt-59 Nuclear Magnetic Resonance Study of Cobalt(III) Complexes. Empirical Rules for the Cobalt-59 Chemical Shifts and Line Widths of [CoIII(en)x(NH3)6−2x−yLy]-type Complexes
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1. Solvent Effects on Nitrogen Chemical Shifts;Annual Reports on NMR Spectroscopy;2015
2. Detection of Proton-Acceptor Sites of Hydrogen Bonding in Adenine · Uracil Base Pairs by the Use of 15N Magnetic Resonance;European Journal of Biochemistry;2005-03-03
3. 14N NMR of amminecobalt(III) compounds;Magnetic Resonance in Chemistry;2003
4. NMR Spectroscopic Characterization of Methylcobalt(III) Compounds with Classical Ligands. Crystal Structures of [Co(NH3)5(CH3)]S2O6, trans-[Co(en)2(NH3)(CH3)]S2O6 (en = 1,2-Ethanediamine), and [Co(NH3)6]-mer,trans-[Co(NO2)3(NH3)2(CH3)]2-trans- [Co(NO2)4(NH3)2];Inorganic Chemistry;1997-05-01
5. Nitrogen-15 NMR coordination shifts of β-alanine and glycine in cobalt(III) complexes;Inorganica Chimica Acta;1994-03
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