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第一排过渡金属(从钛到锌)双核金属配合物中的金属-金属(MM)键距和键级

Metal-Metal (MM) Bond Distances and Bond Orders in Binuclear Metal Complexes of the First Row Transition Metals Titanium Through Zinc.

作者信息

Duncan Lyngdoh Richard H, Schaefer Henry F, King R Bruce

机构信息

Department of Chemistry , North-Eastern Hill University , Shillong 793022 , India.

Centre for Computational Quantum Chemistry , University of Georgia , Athens , Georgia 30602 , United States.

出版信息

Chem Rev. 2018 Dec 26;118(24):11626-11706. doi: 10.1021/acs.chemrev.8b00297. Epub 2018 Dec 13.

Abstract

This survey of metal-metal (MM) bond distances in binuclear complexes of the first row 3d-block elements reviews experimental and computational research on a wide range of such systems. The metals surveyed are titanium, vanadium, chromium, manganese, iron, cobalt, nickel, copper, and zinc, representing the only comprehensive presentation of such results to date. Factors impacting MM bond lengths that are discussed here include (a) the formal MM bond order, (b) size of the metal ion present in the bimetallic core (M) , (c) the metal oxidation state, (d) effects of ligand basicity, coordination mode and number, and (e) steric effects of bulky ligands. Correlations between experimental and computational findings are examined wherever possible, often yielding good agreement for MM bond lengths. The formal bond order provides a key basis for assessing experimental and computationally derived MM bond lengths. The effects of change in the metal upon MM bond length ranges in binuclear complexes suggest trends for single, double, triple, and quadruple MM bonds which are related to the available information on metal atomic radii. It emerges that while specific factors for a limited range of complexes are found to have their expected impact in many cases, the assessment of the net effect of these factors is challenging. The combination of experimental and computational results leads us to propose for the first time the ranges and "best" estimates for MM bond distances of all types (Ti-Ti through Zn-Zn, single through quintuple).

摘要

这项对第一排3d区元素双核配合物中金属-金属(MM)键距的调查回顾了一系列此类体系的实验和计算研究。所调查的金属包括钛、钒、铬、锰、铁、钴、镍、铜和锌,是迄今为止对此类结果的唯一全面呈现。这里讨论的影响MM键长的因素包括:(a)形式上的MM键级;(b)双金属核(M)中存在的金属离子的大小;(c)金属氧化态;(d)配体碱性、配位模式和数量的影响;以及(e)庞大配体的空间效应。尽可能检查了实验和计算结果之间的相关性,对于MM键长通常得出良好的一致性。形式键级为评估实验和计算得出的MM键长提供了关键依据。双核配合物中金属变化对MM键长范围的影响表明了单、双、三、四重MM键的趋势,这些趋势与有关金属原子半径的现有信息相关。结果表明,虽然在许多情况下发现有限范围配合物的特定因素有其预期影响,但评估这些因素的净效应具有挑战性。实验和计算结果的结合使我们首次提出了所有类型(从Ti-Ti到Zn-Zn,单键到五重键)MM键距的范围和“最佳”估计值。

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