Homolytic B–Cl bond dissociation energies of chloroborane-type molecules

Q4 Chemistry
Wen-guan Lu, Robert J. O’Reilly
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引用次数: 2

Abstract

This study reports accurate gas-phase homolytic B–Cl bond dissociation energies, obtained using the benchmark-quality W1w thermochemical protocol, for a set of 25 chloroborane-type molecules (known herein as the BCl25BDE dataset). The BDEs of these species differ by as much as 136.5 kJ mol-1 at 298 K, with (BH2)2BCl having the lowest BDE (388.5 kJ mol-1 at 298 K) and (CH3)HBCl having the highest (525.1 kJ mol-1 ).  Using the W1w BDEs as reference values, the accuracy of a diverse set of more economical DFT procedures (which may be applied to the study of molecules sufficiently large that the use of benchmark-quality methods such as W1w is rendered computationally prohibitive) have been investigated. As a result of this analysis, the most accurate methods for the computation of B–Cl BDEs are ωB97/A'VQZ (MAD = 3.0 kJ mol-1 ) and M06/A'VTZ (MAD = 3.2 kJ mol-1 ). The double-hybrid functional DSD-PBEP86 in conjunction with the A'VQZ basis set (MAD = 4.0 kJ mol-1 ) was found to give the lowest largest deviation (LD = 6.4 kJ mol-1 ) of any of methods considered in this assessment study.
氯硼烷型分子的均相B–Cl键离解能
本研究报告了一组25个氯硼烷型分子(本文称为BCl25BDE数据集)使用基准质量W1w热化学方案获得的准确气相均裂B–Cl键离解能。这些物种在298K下的BDE差异高达136.5kJ mol-1,其中(BH2)2BCl的BDE最低(298K下为388.5kJ mol-1),(CH3)HBCl的BDE。使用W1w BDE作为参考值,研究了一组更经济的DFT程序的准确性(该程序可用于研究足够大的分子,从而使W1w等基准质量方法的使用在计算上变得禁止)。根据该分析,计算B–Cl BDE的最准确方法是ωB97/a'VQZ(MAD=3.0 kJ mol-1)和M06/a'VTZ(MAD=3.2 kJ mol-2)。在本评估研究中考虑的任何方法中,双杂交函数DSD-PBEP86与A’VQZ基集(MAD=4.0 kJ mol-1)的偏差最小(LD=6.4 kJ mol-2)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mongolian Journal of Chemistry
Mongolian Journal of Chemistry Materials Science-Materials Chemistry
CiteScore
1.10
自引率
0.00%
发文量
5
审稿时长
20 weeks
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