Santos Lucas A, da Cunha Elaine F F, Ramalho Teodorico C
Department of Chemistry, Federal University of Lavras , CEP 37200-000 Lavras, Minas Gerais, Brazil.
Center for Basic and Applied Research, University Hradec Kralove , Hradec Kralove, Czech Republic.
J Phys Chem A. 2017 Mar 30;121(12):2442-2451. doi: 10.1021/acs.jpca.6b13112. Epub 2017 Mar 21.
The electronic effects in supramolecular systems are a great challenge for computational chemistry, and the understanding of ligand-protein interactions driven by halogen bonds can be limited by molecular mechanics point of view. In fact, the variations of the halogen bond acceptors, such as an aromatic ring and electrons lone pairs, restrict the classical approximations even more. Our work enhances the statement that halogen bonds are led mainly by orbital interactions via σ*. Nonetheless, we have pointed a straight relationship between the maximum ESP value on the σ-hole and the LUMO energy levels of the halogen bond donor. In line with this scenario, the current work introduces a new promising empirical potential based on quantum parametrizations able to describe general halogen bonded systems. The new parameters allow force fields to detect variations on the molecular electronic structure of halogenated organic compounds to improve the description of fluorine, chlorine, and bromine in halogen bonds.
超分子体系中的电子效应是计算化学面临的巨大挑战,从分子力学角度来看,对由卤键驱动的配体 - 蛋白质相互作用的理解可能会受到限制。事实上,卤键受体的变化,如芳香环和孤对电子,进一步限制了经典近似。我们的工作强化了卤键主要由通过σ*的轨道相互作用主导这一观点。尽管如此,我们指出了σ-空穴上的最大静电势(ESP)值与卤键供体的最低未占分子轨道(LUMO)能级之间的直接关系。在此背景下,当前工作引入了一种基于量子参数化的新的有前景的经验势,能够描述一般的卤键体系。新参数使力场能够检测卤代有机化合物分子电子结构的变化,以改善对卤键中氟、氯和溴的描述。