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Water on BN doped benzene: A hard test for exchange-correlation functionals and the impact of exact exchange on weak binding

机译:BN掺杂苯上的水:交换相关功能的严格测试以及精确交换对弱结合的影响

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Density functional theory (DFT) studies of weakly interacting complexes have recently focused on the importance of van der Waals dispersion forces, whereas the role of exchange has received far less attention. Here, by exploiting the subtle binding between water and a boron and nitrogen doped benzene derivative (1,2-azaborine) we show how exact exchange can alter the binding conformation within a complex. Benchmark values have been calculated for three orientations of the water monomer on 1,2-azaborine from explicitly correlated quantum chemical methods, and we have also used diffusion quantum Monte Carlo. For a host of popular DFT exchange-correlation functionals we show that the lack of exact exchange leads to the wrong lowest energy orientation of water on 1,2-azaborine. As such, we suggest that a high proportion of exact exchange and the associated improvement in the electronic structure could be needed for the accurate prediction of physisorption sites on doped surfaces and in complex organic molecules. Meanwhile to predict correct absolute interaction energies an accurate description of exchange needs to be augmented by dispersion inclusive functionals, and certain non-local van der Waals functionals (optB88- and optB86b-vdW) perform very well for absolute interaction energies. Through a comparison with water on benzene and borazine (B3N3H6) we show that these results could have implications for the interaction of water with doped graphene surfaces, and suggest a possible way of tuning the interaction energy. (C) 2014 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution 3.0 Unported License.
机译:弱相互作用复合物的密度泛函理论(DFT)研究最近集中在范德华分散力的重要性上,而交换的作用却很少受到关注。在这里,通过利用水与硼和氮掺杂的苯衍生物(1,2-氮杂萘胺)之间的微妙结合,我们展示了精确的交换如何改变复合物中的结合构象。根据明确相关的量子化学方法,已经计算出了水分子在1,2-氮杂萘上的三个取向的基准值,并且我们还使用了扩散量子蒙特卡罗方法。对于许多流行的DFT交换相关函数,我们表明缺少精确的交换会导致错误的1,2-天青胺上最低的水能方向。因此,我们建议为了准确预测掺杂表面和复杂有机分子中的物理吸附位,可能需要大量比例的精确交换和相关的电子结构改善。同时,为了预测正确的绝对相互作用能,需要通过色散包含功能来增强对交换的准确描述,并且某些非局部范德华功能(optB88-和optB86b-vdW)对于绝对相互作用能的性能非常好。通过与水在苯和三嗪(B3N3H6)上的比较,我们表明这些结果可能对水与掺杂石墨烯表面的相互作用有影响,并提出了一种调节相互作用能的可能方法。 (C)2014年作者。除另有说明外,所有文章内容均根据知识共享署名3.0未移植许可证进行许可。

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