金属硝基配合物的制备、结构特征和物理化学性质。

4区 化学 Q3 Chemistry
Structure and Bonding Pub Date : 2013-01-01 Epub Date: 2013-05-29 DOI:10.1007/430_2013_101
Lauren R Holloway, Lijuan Li
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引用次数: 0

摘要

本文讨论了近十年来合成的一组具有代表性的新型非血红素金属亚硝酰配合物的制备和表征。根据金属类型、存在的金属中心的数量以及与金属配位的配体的类型来检查和分类它们的结构。配体可以是基于磷、氮或硫的(除了少数例外),并且可以根据螯合作用、分子间作用力或其他配体的存在而变化。综述了亚硝酰配体的结构和键合特性,并举例说明了亚硝酰基配体的反应性。研究了这些配合物的一些相关物理化学性质,包括IR、EPR、NMR、UV-vis、循环伏安法和X射线晶体学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Preparation, Structural Characteristics, and Physical Chemical Properties of Metal-Nitrosyl Complexes.

The preparation and characterization of a representative group of novel non-heme metal nitrosyl complexes that have been synthesized over the last decade are discussed here. Their structures are examined and classified based on metal type, the number of metal centers present, and the type of ligand that is coordinated with the metal. The ligands can be phosphorus, nitrogen, or sulfur based (with a few exceptions) and can vary depending on the presence of chelation, intermolecular forces, or the presence of other ligands. Structural and bonding characteristics are summarized and examples of reactivity regarding nitrosyl ligands are given. Some of the relevant physical chemical properties of these complexes, including IR, EPR, NMR, UV-vis, cyclic voltammetry, and X-ray crystallography are examined.

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来源期刊
Structure and Bonding
Structure and Bonding 化学-无机化学与核化学
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期刊介绍: Structure and Bonding is a publication which uniquely bridges the journal and book format. Organized into topical volumes, the series publishes in depth and critical reviews on all topics concerning structure and bonding. With over 50 years of history, the series has developed from covering theoretical methods for simple molecules to more complex systems. Topics addressed in the series now include the design and engineering of molecular solids such as molecular machines, surfaces, two dimensional materials, metal clusters and supramolecular species based either on complementary hydrogen bonding networks or metal coordination centers in metal-organic framework materials (MOFs). Also of interest is the study of reaction coordinates of organometallic transformations and catalytic processes, and the electronic properties of metal ions involved in important biochemical enzymatic reactions.
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