ChemistryMedicine

Yan Ji, Xiaoliang Yang, Zhi Ji, Linhui Zhu, N. Ma, Dejun Chen, Xianbin Jia, Jun-ming Tang, Yilin Cao

2020.4.8ACS Omega

DOI: 10.1021/acsomega.9b04421

tlooto Summary

The results of this research can help to explain the formation of the amide infrared spectrum, which has positive significance in organic chemistry, analytical chemistry, and chemical biology.

Abstract

The infrared spectrum (IR) characteristic peaks of amide I, amide II, and amide III bands are marked as amide or peptide characteristic peaks. Through the nuclear magnetic resonance study, N-methylacetamide has been determined to have six fine components, which include protonation, hydration, and hydroxy structures. Then the independent IR spectrum of every component in N-methylacetamide is calculated by using the density functional theory quantum chemistry method, and the contribution of each component to amide I, II, and III bands is analyzed. The results of this research can help to explain the formation of the amide infrared spectrum, which has positive significance in organic chemistry, analytical chemistry, and chemical biology.

Citation format

JI, Yan, et al. DFT-Calculated IR spectrum amide i, II, and III band contributions of n-methylacetamide fine components. ACS Omega, 2020, 5: 8572–8578.