通过各种取代策略提高 2-苯基-1,3-二甲基咪唑阳离子在碱性条件下的稳定性

IF 1.6 4区 化学 Q4 CHEMISTRY, PHYSICAL
Tiancheng Xiang, Hongyan Si
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引用次数: 0

摘要

通过研究几种取代的 2-苯基-1,3-二甲基咪唑阳离子(PDMIm+)的降解反应,研究了不同取代位置的各种取代基对咪唑阳离子稳定性的影响。密度泛函理论计算的结果表明,咪唑阳离子的稳定性可通过在 C2 位置附近进行取代而显著提高。这些取代位置包括 PDMIm+ 的苯基正交位置以及咪唑环上的 N1/N3 和 C4/C5 位置。此外,在所讨论的取代基中,乙基是最有效的取代基。计算还表明,正交位置的双烷基取代基能更有效地提高咪唑阳离子在降解反应中的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Improving the stability of 2-phenyl-1,3-dimethyl imidazolium cations under alkaline conditions through various substitution strategies

Improving the stability of 2-phenyl-1,3-dimethyl imidazolium cations under alkaline conditions through various substitution strategies

The effects of various substituents at different substitution positions on the stability of imidazolium cations were investigated by studying the degradation reactions of several substituted 2-phenyl-1,3-dimethyl imidazolium cations (PDMIm+). The results of density functional theory calculations revealed that the stability of the imidazolium cation could be significantly enhanced by substitutions near the C2 position. These substitution positions included the ortho positions of the phenyl group and the N1/N3 and C4/C5 positions on the imidazole ring of PDMIm+. Moreover, the ethyl group was the most effective substituent among the ones discussed. The calculations also revealed that double alkyl substituents at ortho positions could more effectively improve the stability of imidazolium cations in the degradation reactions.

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来源期刊
Theoretical Chemistry Accounts
Theoretical Chemistry Accounts 化学-物理化学
CiteScore
3.40
自引率
0.00%
发文量
74
审稿时长
3.8 months
期刊介绍: TCA publishes papers in all fields of theoretical chemistry, computational chemistry, and modeling. Fundamental studies as well as applications are included in the scope. In many cases, theorists and computational chemists have special concerns which reach either across the vertical borders of the special disciplines in chemistry or else across the horizontal borders of structure, spectra, synthesis, and dynamics. TCA is especially interested in papers that impact upon multiple chemical disciplines.
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