O'Reilly Robert J, Karton Amir
School of Science and Technology, University of New England, Armidale, NSW 2351, Australia.
Molecules. 2023 Jul 28;28(15):5707. doi: 10.3390/molecules28155707.
Fluoroborane-type molecules (RRB-F) are of interest in synthetic chemistry, but to date, apart from a handful of small species (such as HBF, HBF, and BF), little is known concerning the effect of substituents in governing the strength of the B-F bonds of such species toward homolytic dissociation in the gas phase. In this study, we have calculated the bond dissociation enthalpies (BDEs) of thirty unique B-F bonds at the CCSD(T)/CBS level using the high-level W1w thermochemical protocol. The B-F bonds in all species considered are very strong, ranging from 545.9 kJ mol in (HB)B-F to 729.2 kJ mol HBF. Nevertheless, these BDEs still vary over a wide range of 183.3 kJ mol. The structural properties that affect the BDEs are examined in detail, and the homolytic BDEs are rationalized based on molecule stabilization enthalpies and radical stabilization enthalpies. Since polar B-F bonds may represent a challenging test case for density functional theory (DFT) methods, we proceed to examine the performance of a wide range of DFT methods across the rungs of Jacob's Ladder for their ability to compute B-F BDEs. We find that only a handful of DFT methods can reproduce the CCSD(T)/CBS BDEs with mean absolute deviations (MADs) below the threshold of chemical accuracy (i.e., with average deviations below 4.2 kJ mol). The only functionals capable of achieving this feat were (MADs given in parentheses): ωB97M-V (4.0), BMK (3.5), DSD-BLYP (3.8), and DSD-PBEB95 (1.8 kJ mol).
氟硼烷型分子(RRB - F)在合成化学领域备受关注,但迄今为止,除了少数几个小分子(如HBF、HBF和BF)外,关于取代基对这类分子中B - F键在气相中均裂解离强度的影响,人们所知甚少。在本研究中,我们使用高级W1w热化学方法,在CCSD(T)/CBS水平上计算了30种独特B - F键的键解离焓(BDEs)。所有考虑的物种中的B - F键都非常强,范围从(HB)B - F中的545.9 kJ/mol到HBF中的729.2 kJ/mol。然而,这些BDEs仍在183.3 kJ/mol的宽范围内变化。详细研究了影响BDEs的结构性质,并基于分子稳定焓和自由基稳定焓对均裂BDEs进行了合理化解释。由于极性B - F键可能是密度泛函理论(DFT)方法的一个具有挑战性的测试案例,我们接着研究了一系列跨越雅各布天梯各层级的DFT方法计算B - F键BDEs的能力。我们发现只有少数几种DFT方法能够以低于化学精度阈值的平均绝对偏差(MADs)(即平均偏差低于4.2 kJ/mol)重现CCSD(T)/CBS BDEs。能够实现这一壮举的唯一泛函是(括号内给出MADs):ωB97M - V(4.0)、BMK(3.5)、DSD - BLYP(3.8)和DSD - PBEB95(1.8 kJ/mol)。