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非轴向n → σ*轨道相互作用在四元键合中的贡献:以Si…N相互作用为例的研究。

Contribution of Nonaxial n → σ* Orbital Interactions in Tetrel Bonding: A Case Study on Si…N Interactions.

作者信息

Vasarla Anjali Devi, Sen Anik, Shukla Rahul

机构信息

CMDD Laboratory, Department of Chemistry, School of Science, GITAM (Deemed to be University), Visakhapatnam, Andhra Pradesh, 530045, India.

NCI Laboratory, Department of Chemistry, School of Science, GITAM (Deemed to be University), Visakhapatnam, Andhra Pradesh, 530045, India.

出版信息

Chemphyschem. 2025 Sep 10;26(17):e202500042. doi: 10.1002/cphc.202500042. Epub 2025 Jul 16.

Abstract

The formation of a σ-hole interaction is typically associated with a corresponding n → σ* orbital interaction. This study examines the role of these n → σ* interactions in stabilizing Si…N tetrel bonding within various dimeric complexes. While conventional n → σ* orbital overlap along the tetrel bonding axis is observed as expected, the findings highlight the presence and significant contribution of additional nonaxial n → σ* orbital interactions in sp-hybridized silicon dimers. Traditional theories of tetrel bonding emphasize linear interactions along the σ-hole axis, characterized by direct head-to-head n → σ* overlaps. However, this study reveals that nonaxially oriented σ* orbitals of the tetrel atom can also substantially interact with electron donors, significantly enhancing the stability of Si…N tetrel bonds. Depending on the substituents in the dimeric complexes, nonaxial n → σ* interactions can contribute notably higher to the stabilization than their axial counterparts.

摘要

σ-空穴相互作用的形成通常与相应的n → σ轨道相互作用相关。本研究考察了这些n → σ相互作用在稳定各种二聚体配合物中Si…N四元键方面的作用。虽然如预期那样观察到了沿四元键轴的传统n → σ轨道重叠,但研究结果突出了在sp杂化硅二聚体中额外的非轴向n → σ轨道相互作用的存在及其重大贡献。传统的四元键理论强调沿σ-空穴轴的线性相互作用,其特征是直接的头对头n → σ重叠。然而,本研究表明,四元原子的非轴向取向σ轨道也能与电子供体发生显著相互作用,从而显著增强Si…N四元键的稳定性。根据二聚体配合物中的取代基不同,非轴向n → σ*相互作用对稳定性的贡献可能明显高于其轴向对应物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b504/12447117/67aff1364b45/CPHC-26-e202500042-g006.jpg

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