配体强化的几何约束和 p-嵌段化合物的相关反应性

IF 39 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Tyler J. Hannah and Saurabh S. Chitnis
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引用次数: 0

摘要

利用价壳层电子对斥力(VSEPR)理论,一般可以根据元素中心周围的电子对数来预测元素中心的几何形状。由于这种扭曲所产生的独特的结构结果、光谱性质或反应模式,使p-嵌段化合物偏离这些预测几何形状的策略获得了相当大的兴趣。这篇综述对这一令人兴奋和快速发展的领域进行了最新的分组总结,重点是了解所使用的配体如何解锁结构特征,从而影响相关的反应性。讨论了13-16基团的相关几何约束化合物,以及选定的化学计量和催化反应。本文还讨论了该领域有待发展的几个方面。总的来说,这篇综述提出了几何调谐的概念,作为一个重要的杠杆,与电子和立体调谐,在控制键和反应性的p块中心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ligand-enforced geometric constraints and associated reactivity in p-block compounds

Ligand-enforced geometric constraints and associated reactivity in p-block compounds

Ligand-enforced geometric constraints and associated reactivity in p-block compounds

The geometry at an element centre can generally be predicted based on the number of electron pairs around it using valence shell electron pair repulsion (VSEPR) theory. Strategies to distort p-block compounds away from these predicted geometries have gained considerable interest due to the unique structural outcomes, spectroscopic properties or reactivity patterns engendered by such distortion. This review presents an up-to-date group-wise summary of this exciting and rapidly growing field with a focus on understanding how the ligand employed unlocks structural features, which in turn influences the associated reactivity. Relevant geometrically constrained compounds from groups 13–16 are discussed, along with selected stoichiometric and catalytic reactions. Several areas for advancement in this field are also discussed. Collectively, this review advances the notion of geometric tuning as an important lever, alongside electronic and steric tuning, in controlling bonding and reactivity at p-block centres.

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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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