31P NMR Analysis of Cyclotriphosphazenes
Ho‐Shing Wu, Shang‐Shin Meng
Abstract
Ho‐Shing Wu, Shang‐Shin Meng
Abstract
The relationships of 31 P chemical shift with the degree of the substitution, the different kind of substituent group, reaction activation energy, and electronegativity and of the coupling constant with the degree of the substitution were investigated. The 31 P chemical shifts and the coupling constants correlate linearly with the degree of the substitution. The chemical shifts are proportional to the reaction activation energy. Observed chemical shifts are expressed and calculated with a partial chemical shift of the unit substituent group and electronegativity. These correlations can be useful for the assignment of the resonances of other related derivatives.
OpenAlex reports 25 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The relationships of 31 P chemical shift with the degree of the substitution, the different kind of substituent group, reaction activation energy, and electronegativity and of the coupling constant with the degree of the substitution were investigated. The 31 P chemical shifts and the coupling constants correlate linearly with the degree of the substitution. The chemical shifts are proportional to the reaction activation energy. Observed chemical shifts are expressed and calculated with a partial chemical shift of the unit substituent group and electronegativity. These correlations can be useful for the assignment of the resonances of other related derivatives.
Key concepts: Electronegativity, Chemical shift, Substituent, Chemistry, Degree (music), Coupling constant, Activation energy, Chemical reaction