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实验和密度泛函理论研究 1,1,1,4,4,4-六氟-2-丁烯的热解。

Experimental and Density Functional Theory Studies on 1,1,1,4,4,4-Hexafluoro-2-Butene Pyrolysis.

机构信息

State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei 230027, China.

Department of Civil and Architectural Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon 999077, Hong Kong.

出版信息

Molecules. 2020 Aug 21;25(17):3799. doi: 10.3390/molecules25173799.

Abstract

A series of thermal decomposition experiments were conducted over a temperature range of 873-1073 K to evaluate the thermal stability of 1,1,1,4,4,4-hexafluoro-2-butene (HFO-1336mzz(Z)) and the production of hydrogen fluoride (HF). According to the detected products and experimental phenomena, the thermal decomposition of HFO-1336mzz(Z) could be divided into three stages. Our experimental results showed that HF concentration gradually increased with the elevation of thermal decomposition temperature. In this present study, a total of seven chemical reaction pathways of HFO-1336mzz(Z) pyrolysis were proposed to explore the generated mechanism on products through density functional theory (DFT) with M06-2X/6-311++(d,p) level theory. The thermal decomposition mechanism of pure HFO-1336mzz(Z) was discussed and the possible formation pathways of HF and other main products were proposed.

摘要

进行了一系列热分解实验,实验温度范围为 873-1073 K,以评估 1,1,1,4,4,4-六氟-2-丁烯(HFO-1336mzz(Z))的热稳定性和氟化氢(HF)的生成情况。根据检测到的产物和实验现象,HFO-1336mzz(Z)的热分解可以分为三个阶段。我们的实验结果表明,HF 浓度随着热分解温度的升高逐渐增加。在本研究中,通过密度泛函理论(DFT)与 M06-2X/6-311++(d,p)水平理论,提出了总共 7 条 HFO-1336mzz(Z)热解的化学反应途径,以探究产物的生成机理。讨论了纯 HFO-1336mzz(Z)的热分解机制,并提出了 HF 和其他主要产物的可能形成途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6b/7503914/c9396e2bf544/molecules-25-03799-g001.jpg

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