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首页> 外文期刊>Angewandte Chemie >Relativistic Effects in Gas-Phase Ion Chemistry: An Experimentalist's View
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Relativistic Effects in Gas-Phase Ion Chemistry: An Experimentalist's View

机译:气相离子化学中的相对论效应:实验者的观点

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摘要

Gas-phase experiments provide information which, in conjunction with results from electronic structure calculations, help to unravel the critical role relativistic effects play in many areas of transition-metal chemistry. Examples include the thermochemical data of gold halides in different oxidation states, the fascinating structural properties of gold (I) complexes, the dramatic effects of ligands on the ionization energy of gold, or the binding in cationic metal-carbene complexes. Furthermore, in the context of methane functionalization, special emphasis is paid to the chemistry of cationic metal-carbene complexes, and at uncovering the mechanistic details of important carbon-heteroatom coupling reactions. It is the interplay of conducting experiments of "isolated" molecules under well-defined conditions with reliable electronic structure calculations that has considerably improved our understanding of the role relativistic effects play in the context of transition-metal chemistry, catalysis, and beyond.
机译:气相实验提供的信息与电子结构计算的结果相结合,有助于揭示相对论效应在过渡金属化学的许多领域中发挥的关键作用。实例包括处于不同氧化态的卤化金的热化学数据,金(I)配合物的引人入胜的结构特性,配体对金的电离能的显着影响或阳离子金属-卡宾配合物中的结合。此外,在甲烷功能化的背景下,应特别强调阳离子金属-卡宾配合物的化学性质,以及揭示重要的碳-杂原子偶联反应的机理细节。正是在定义明确的条件下进行可靠的电子结构计算进行“分离的”分子实验的相互作用,极大地提高了我们对相对论效应在过渡金属化学,催化等方面的作用的理解。

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