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磷酸三甲酯的单分子分解机理

The Unimolecular Decomposition Mechanism of Trimethyl Phosphate.

作者信息

Kanayama Keisuke, Nakamura Hisashi, Maruta Kaoru, Bodi Andras, Hemberger Patrick

机构信息

Laboratory for Synchrotron Radiation and Femtochemistry, Paul Scherrer Institute, CH 5232, Villigen PSI, Switzerland.

Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba, 980-8577, Sendai, Miyagi, Japan.

出版信息

Chemistry. 2024 Sep 2;30(49):e202401750. doi: 10.1002/chem.202401750. Epub 2024 Aug 12.

Abstract

Trimethyl phosphate (TMP), an organophosphorus compound (OPC), is a promising fire-retardant candidate for lithium-ion battery (LIB) electrolytes to mitigate fire spread. This study aims to understand the mechanism of TMP unimolecular thermal decomposition to support the integration of a TMP chemical kinetic model into a LIB electrolyte surrogate model. Reactive intermediates and products of TMP thermal decomposition were experimentally detected using vacuum ultraviolet (VUV) synchrotron radiation and double imaging photoelectron photoion coincidence (iPEPICO) spectroscopy. Phosphorus-containing intermediates such as PO, HPO and HPO were identified. Sampling effects could successfully be obviated thanks to photoion imaging, which also showed evidence for isomerization reactions upon wall collisions in the ionization chamber. Quantum chemical calculations performed for the unimolecular decomposition of TMP revealed for the first time that isomerization channels via hydrogen and methyl transfer (barrier heights of 65.9 and 72.6 kcal/mol, respectively) are the lowest-energy primary steps of TMP decomposition followed by CHOH/CH/CHO or dimethyl ether (DME) production, respectively. We found an analogous DME production channel in the unimolecular decomposition of dimethyl methylphosphonate (DMMP), another important OPC fire-retardant additive with a similar molecular structure to TMP, which are not included in currently available chemical kinetic models.

摘要

磷酸三甲酯(TMP)是一种有机磷化合物(OPC),是一种很有前景的用于锂离子电池(LIB)电解质的阻燃剂,可减轻火灾蔓延。本研究旨在了解TMP单分子热分解的机理,以支持将TMP化学动力学模型集成到LIB电解质替代模型中。利用真空紫外(VUV)同步辐射和双成像光电子光离子符合(iPEPICO)光谱对TMP热分解的反应中间体和产物进行了实验检测。鉴定出了含磷中间体,如PO、HPO和HPO。由于光离子成像,成功消除了采样效应,光离子成像还显示了电离室内壁碰撞时异构化反应的证据。对TMP单分子分解进行的量子化学计算首次表明,通过氢和甲基转移的异构化通道(势垒高度分别为65.9和72.6 kcal/mol)是TMP分解的最低能量主要步骤,随后分别生成CHOH/CH/CHO或二甲醚(DME)。我们在膦酸二甲酯(DMMP)的单分子分解中发现了类似的DME生成通道,DMMP是另一种重要的OPC阻燃添加剂,其分子结构与TMP相似,目前可用的化学动力学模型中未包括该通道。

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