Effects of Solvent Molecular Size on Dissociation Rates of the N–H Bond in Ammonium Salts Derived from Tertiary Amines
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/cl/22/7/22_7_1249/_pdf
Reference14 articles.
1. Dynamic NMR as a Nondestructive Method for the Determination of Rates of Dissociation. XVII. Dissociation of the N–B Bond in the Coordinated Form of 2-[2-(Dimethylaminomethyl)phenyl]-4,4-diphenyl-1,3,2-dioxaborolane and Related Compounds
2. Dynamic NMR as a Nondestructive Method for the Determination of Rates of Dissociation. XVIII. Factors Affecting the Rates of Dissociation of N–B Bond in the Coordinated Form of 9-[2-(Dialkylaminomethyl) phenyl]-9-borabicyclo[3.3.1] nonanes
3. Dynamic NMR as a Nondestructive Method for the Determination of Rates of Dissociation. V. Proton Affinities ofp-SubstitutedN,N-Dibenzylanilines in Aprotic Solvents
4. Dynamic NMR as a Nondestructive Method for the Determination of Rates of Dissociation. IX. Rates of Dissociative Reactions of the Coordinated Form of [o-(Diethylaminomethyl)phenyl]halodimethyl(or diphenyl)stannanes
5. Dynamic NMR as a Nondestructive Method for the Determination of Rates of Dissociation. XIV. Examination of Rates of Proton-Detachment from Ammonium Ions with Multiple Probes
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