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基于吡啶鎓的七氟异丁酰胺催化脱水合成环境友好型绝缘气体七氟异丁腈的理论研究

Theoretical Investigation of the Pyridinium-Inspired Catalytic Dehydration of Heptafluoro-Iso-Butyramide for the Synthesis of Environmentally Friendly Insulating Gas Heptafluoro-Iso-Butyronitrile.

作者信息

Xiong Jiageng, Hou Hua, Wang Baoshan

机构信息

College of Chemistry and Molecular Science, Wuhan University, Wuhan 430072, China.

出版信息

Molecules. 2024 Aug 21;29(16):3952. doi: 10.3390/molecules29163952.

Abstract

Heptafluoro-iso-butyronitrile (-CFCN) represents a feasible eco-friendly replacement gas for the most potent greenhouse gas sulfur hexafluoride in various high-voltage power transmission equipment. The reaction mechanisms for the in situ synthesis of -CFCN from heptafluoro-iso-butyramide [-CFC(O)NH] in the presence of trifluoroacetic anhydride (TFAA) and pyridine (Py) in dimethylformamide solution have been studied within density functional theory with M06-2X exchange-correlation functional with the 6-311++G(d,p) basis set and the high-level ab initio complete basis set quadratic CBS-QB3 method. It is revealed that the unimolecular dehydration of -CFC(O)NH can be catalyzed efficiently by TFAA in terms of both kinetic and thermodynamic aspects, producing -CFCN and trifluoroacetic acid (TFA). Furthermore, Py is capable of reducing the energy barrier of the rate-determining step through hydrogen abstraction to form pyridinium hydrogen. The synergic effect of the TFAA/Py co-catalyst plays a pivotal role in the production of -CFCN as the Gibbs free energy barrier can be lowered by more than 40 kcal/mol with the ratio of TFAA:2Py, in accordance with the experimental observation. The present theoretical work provides new insights into the rational design on the novel catalysts for large-scale synthesis of the perfluorinated nitriles.

摘要

七氟异丁腈(-CFCN)是各种高压输电设备中最强大的温室气体六氟化硫的一种可行的环保替代气体。在密度泛函理论下,采用M06-2X交换相关泛函、6-311++G(d,p)基组以及高水平从头算完全基组二次CBS-QB3方法,研究了在二甲基甲酰胺溶液中,七氟异丁酰胺[-CFC(O)NH]在三氟乙酸酐(TFAA)和吡啶(Py)存在下原位合成-CFCN的反应机理。结果表明,从动力学和热力学两方面来看,TFAA都能有效地催化-CFC(O)NH的单分子脱水反应,生成-CFCN和三氟乙酸(TFA)。此外,Py能够通过夺取氢形成吡啶鎓氢来降低速率决定步骤的能垒。TFAA/Py共催化剂的协同作用在-CFCN的生成中起着关键作用,根据实验观察,当TFAA与2Py的比例为1时,吉布斯自由能垒可降低超过40 kcal/mol。目前的理论工作为大规模合成全氟腈的新型催化剂的合理设计提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d4/11357488/fa1baebd46c7/molecules-29-03952-sch001.jpg

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