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Theoretical study on the unimolecular decomposition of 2-chlorinated ethyl hydroperoxide

机译:2-氯化氢过氧化氢单分子分解的理论研究

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摘要

Chlorine-containing organic compounds have been of major interest since such compounds would serve as temporary reservoirs for HOX, ROX and ClOX radicals. Moreover, it would transport chlorine species to the atmosphere and stratosphere. However, limited studies have been performed on the 2-chlorinated ethyl hydroperoxide. In this work, the mechanism of unimolecular dissociation of 2-chlorinated ethyl hydroperoxide is theoretically studied. The equilibrium structures are optimized at the Boese-Martin for kinetics (BMK) level. And the energies are further refined at the Balanced multi-coefficient correlation-coupled cluster theory with single and double excitations (BMC-CCSD) level on the basis of the optimized geometries. Fifteen reaction channels are finally confirmed including the direct C-O, O-O, O-H, and C-C bond cleavage or the H-2-, H2O-, H2O2-, and CH3Cl-elimination.
机译:含氯有机化合物引起了人们的极大兴趣,因为这类化合物将用作HOX,ROX和ClOX自由基的临时储存剂。此外,它将氯气物质传送到大气和平流层。但是,对2-氯化氢过氧化乙基进行了有限的研究。在这项工作中,从理论上研究了2-氯化氢过氧化氢的单分子解离机理。在Boese-Martin动力学(BMK)级别优化了平衡结构。并在优化的几何结构的基础上,在具有单激励和双激励(BMC-CCSD)级别的平衡多系数相关耦合群集理论中进一步完善了能量。最终确定了15个反应通道,包括直接C-O,O-O,O-H和C-C键断裂或H-2-,H2O-,H2O2-和CH3Cl消除。

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