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化学成键的ETS-NOCV描述:从共价键到非共价相互作用

ETS-NOCV description of chemical bonding: from covalent bonds to non-covalent interactions.

作者信息

Kukułka Mercedes, Żurowska Olga, Mitoraj Mariusz, Michalak Artur

机构信息

Department of Theoretical Chemistry, Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387, Krakow, Poland.

Doctoral School of Exact and Natural Sciences, Jagiellonian University, Łojasiewicza 11, 30-348, Krakow, Poland.

出版信息

J Mol Model. 2024 Dec 4;31(1):6. doi: 10.1007/s00894-024-06222-6.

Abstract

CONTEXT

The interpretation of ETS-NOCV for typical covalent and dative-covalent chemical bonds is presented and compared with that for halogen bonds. Possible tuning of the strength of halogen bonding is considered, first by applying an electric field (modeled by the point charges or the electric field vector), and then by constructing a model transition-metal complex with enhanced strength of halogen bonding. For all the systems, the ETS-NOCV picture is supplemented by the analysis of the deformation in molecular electrostatic potential (ΔMEP). The results demonstrate important characteristic features of the analysis based on NOCV: (i) this approach is based on pairs of orbitals with antibonding and bonding character and, thus, allows us to "extract" the "diatomic-like" picture of chemical bonding; (ii) the NOCV-pair contributions to the deformation density often correspond to donation (AB) and back-donation (AB) of electron density between the fragments. The results for halogen bonding demonstrate that it is possible to tune their strength by an electric field in the molecular environment; the halogen-bond energy can reach the order of magnitude typical of dative-covalent bonds. However, the nature of halogen bonds still differs from that of dative-covalent interactions, as the accumulation of electron density between fragments is of significantly lower magnitude. The main effect of the electric field is an increase in the polarization of the fragments, which is clearly manifested by the deformation in the MEP.

METHODS

All calculations were performed using the ADF/AMS package. The BLYP exchange-correlation functional was employed with Grimme's dispersion correction (D3 version) and Becke-Johnson damping, using TZP basis sets. The deformation in the MEP was determined as with the same fragment definition as in the ETS-NOCV method.

摘要

背景

本文展示了用于典型共价键和配位共价键的ETS-NOCV解释,并与卤键的解释进行了比较。考虑了卤键强度的可能调节,首先通过施加电场(用点电荷或电场矢量建模),然后通过构建卤键强度增强的模型过渡金属配合物。对于所有体系,通过分析分子静电势的变形(ΔMEP)对ETS-NOCV图像进行了补充。结果表明了基于NOCV分析的重要特征:(i)这种方法基于具有反键和键特征的轨道对,因此使我们能够“提取”化学键的“双原子样”图像;(ii)NOCV对变形密度的贡献通常对应于片段之间电子密度的给予(AB)和反馈给予(AB)。卤键的结果表明,在分子环境中通过电场调节其强度是可能的;卤键能达到配位共价键典型的数量级。然而,卤键的本质仍然不同于配位共价相互作用,因为片段之间电子密度的积累幅度要低得多。电场的主要作用是增加片段的极化,这在MEP的变形中明显体现。

方法

所有计算均使用ADF/AMS软件包进行。采用BLYP交换相关泛函,并结合Grimme色散校正(D3版本)和Becke-Johnson阻尼,使用TZP基组。MEP的变形确定为 ,片段定义与ETS-NOCV方法相同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdf0/11618198/3a09528c7fad/894_2024_6222_Fig1_HTML.jpg

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