Suppr超能文献

利用振动光谱定量评估四中心键合。

Quantitative Assessment of Tetrel Bonding Utilizing Vibrational Spectroscopy.

机构信息

Computational and Theoretical Chemistry Group, Department of Chemistry, Southern Methodist University, 3215 Daniel Avenue, Dallas, TX 75275-0314, USA.

出版信息

Molecules. 2018 Oct 25;23(11):2763. doi: 10.3390/molecules23112763.

Abstract

A set of 35 representative neutral and charged tetrel complexes was investigated with the objective of finding the factors that influence the strength of tetrel bonding involving single bonded C, Si, and Ge donors and double bonded C or Si donors. For the first time, we introduced an intrinsic bond strength measure for tetrel bonding, derived from calculated vibrational spectroscopy data obtained at the CCSD(T)/aug-cc-pVTZ level of theory and used this measure to rationalize and order the tetrel bonds. Our study revealed that the strength of tetrel bonds is affected by several factors, such as the magnitude of the -hole in the tetrel atom, the negative electrostatic potential at the lone pair of the tetrel-acceptor, the positive charge at the peripheral hydrogen of the tetrel-donor, the exchange-repulsion between the lone pair orbitals of the peripheral atoms of the tetrel-donor and the heteroatom of the tetrel-acceptor, and the stabilization brought about by electron delocalization. Thus, focusing on just one or two of these factors, in particular, the -hole description can only lead to an incomplete picture. Tetrel bonding covers a range of -1.4 to -26 kcal/mol, which can be strengthened by substituting the peripheral ligands with electron-withdrawing substituents and by positively charged tetrel-donors or negatively charged tetrel-acceptors.

摘要

研究了 35 个具有代表性的中性和带电的四配位化合物体系,目的是寻找影响单键 C、Si 和 Ge 给体和双键 C 或 Si 给体的四配位键强度的因素。我们首次引入了一种用于四配位键的固有键强度度量,该度量源自在 CCSD(T)/aug-cc-pVTZ 理论水平上计算得到的振动光谱数据,并利用该度量对四配位键进行了合理化和排序。我们的研究表明,四配位键的强度受多种因素的影响,例如四配位原子的 -孔大小、四配位受体孤对电子的负静电势、四配位给体外围氢原子的正电荷、四配位给体外围原子的孤对轨道与四配位受体杂原子之间的交换排斥以及电子离域带来的稳定化。因此,仅关注这些因素中的一个或两个,特别是 -孔描述,只能得出不完整的结论。四配位键的范围为-1.4 至-26 kcal/mol,可以通过用吸电子取代基取代外围配体以及用带正电荷的四配位给体或带负电荷的四配位受体来增强其强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b05/6278569/ff1009cfdfe6/molecules-23-02763-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验