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

Authors :
Wen Lu
Robert O'Reilly
Source :
Mongolian Journal of Chemistry, Vol 23, Iss 49, Pp 9-18 (2022)
Publication Year :
2022
Publisher :
Mongolian Academy of Sciences, 2022.

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.

Details

Language :
English
ISSN :
22266739 and 24140082
Volume :
23
Issue :
49
Database :
Directory of Open Access Journals
Journal :
Mongolian Journal of Chemistry
Publication Type :
Academic Journal
Accession number :
edsdoj.4efbaf50978841e0ba7ad1b78562eccb
Document Type :
article
Full Text :
https://doi.org/10.5564/mjc.v23i49.2016