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理论评估哌啶甲基中的二氧化碳反应活性:构象研究。

Theoretical Assessment of Carbon Dioxide Reactivity in Methylpiperidines: A Conformational Investigation.

机构信息

Department of Chemistry and Centre for Energy Science, Indian Institute of Science Education and Research, Pune, Dr. Homi Bhabha Road, Pashan, Pune, 411008 Maharashtra, India.

Chemistry and Chemical Engineering, MC 139-74, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

J Phys Chem A. 2023 Apr 13;127(14):3123-3132. doi: 10.1021/acs.jpca.3c00406. Epub 2023 Mar 15.

Abstract

In this work, the possible mechanisms for the reactions of CO with various positional isomers of methylpiperidines (MPs) (N-MP, 2-MP, 3-MP, and 4-MP) including the effect of aqueous solvation have been explored using quantum chemical methods. The major pathways investigated for CO capture in aqueous amines are carbamate formation, its hydrolysis, and the bicarbonate formation (CO + HO + MP) reaction. The calculations indicate that an axial orientation for the methyl group and an equatorial for the COO group could be energetically ideal in the carbamate product of MPs. The proton abstraction step in the carbamate pathway is almost barrierless for the zwitterion-amine route, while a much higher energy barrier is observed for the zwitterion-HO route. During carbamate hydrolysis, the addition of even two explicit water molecules does not exhibit any notable effect on the already high energy barrier associated with this reaction. This indicates that bicarbonate formation is less likely to occur via carbamate hydrolysis. The calculations suggest that, although the carbamate pathway is kinetically favored, the MP carbamate could still be a minor product, especially for sterically hindered conformations, and the bicarbonate pathway should be predominant in aqueous MPs.

摘要

在这项工作中,使用量子化学方法探讨了 CO 与各种位置异构体的甲基哌啶(MPs)(N-MP、2-MP、3-MP 和 4-MP)反应的可能机制,包括水溶剂化的影响。在水性胺中捕获 CO 的主要途径包括氨基甲酸酯的形成、其水解以及碳酸氢盐的形成(CO + HO + MP)反应。计算表明,在 MPs 的氨基甲酸酯产物中,甲基的轴向取向和 COO 基团的赤道取向可能在能量上是理想的。对于两性离子-胺途径,氨基甲酸酯途径中的质子提取步骤几乎没有能垒,而对于两性离子-HO 途径,则观察到更高的能垒。在氨基甲酸酯水解过程中,即使添加两个显式水分子,也不会对与该反应相关的高能量垒产生任何显著影响。这表明碳酸氢盐的形成不太可能通过氨基甲酸酯的水解发生。计算表明,尽管氨基甲酸酯途径在动力学上是有利的,但 MP 氨基甲酸酯仍然可能是次要产物,特别是对于空间位阻较大的构象,而碳酸氢盐途径在水性 MPs 中应该占主导地位。

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