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Experiment and computation: a combined approach to study the reactivity of palladium complexes in oxidation states 0 to iv

机译:实验和计算:研究氧化态0至iv钯配合物反应性的组合方法

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As the accuracy of computational chemistry increases, and the advent of more powerful computers decreases the amount of time required to perform complex calculations, the use of this to investigate chemical systems becomes increasingly attractive. Particularly in combination with practical lab-based experimental and spectroscopic studies the application of in silico studies is a powerful tool for mechanistic investigations. In this review we demonstrate how a combined experimental and computational approach can yield mechanistic insight that could frequently not have been accessible to this high degree of certainty by utilising one of these two approaches alone. After an introduction describing the challenges of studying palladium-based chemistry, and how this combined approach can help to tackle these challenges (Section 1), we provide examples in which experiments have been used in tandem with computational chemistry. This discussion is categorised by palladium oxidation state for convenience: Pd(0) chemistry comprises discussion on oxidative addition in traditional Pd(0)/Pd(II) cross-coupling (Section 2); a section on odd oxidation state chemistry includes oxidation of Pd(0) to Pdd) dimers, oxidative addition to Pd(I) dimers, oxidation of Pd(II) to Pd(III) dimers and subsequently reductive elimination from these Pd(m) dimers (Section 3); Pd(II) chemistry includes transmetallation, reductive elimination and the field of C-H activation relating to palladium catalysis (Section 4); and finally, a section on Pd(IV) chemistry focusses on reductive elimination from these complexes (Section 5).
机译:随着计算化学准确性的提高,功能更强大的计算机的出现减少了执行复杂计算所需的时间,使用它来研究化学系统变得越来越有吸引力。特别是结合基于实验室的实际实验和光谱学研究,计算机模拟研究的应用是进行机械研究的强大工具。在这篇综述中,我们演示了结合实验和计算方法如何通过仅使用这两种方法中的一种就无法获得如此高的确定性的机械洞察力。在介绍了研究基于钯的化学的挑战以及该组合方法如何帮助应对这些挑战(第1节)的引言之后,我们提供了一些示例,这些示例将实验与计算化学一起使用。为方便起见,此讨论按钯的氧化态分类:Pd(0)化学包括对传统Pd(0)/ Pd(II)交叉偶联中氧化加成的讨论(第2节);关于奇数氧化态化学的部分包括Pd(0)到Pdd)二聚体的氧化,Pd(I)二聚体的氧化加成,Pd(II)氧化成Pd(III)二聚体的氧化以及随后从这些Pd(m)中的还原消除二聚体(第3节); Pd(II)化学包括金属转移,还原消除和与钯催化有关的C-H活化领域(第4节);最后,关于Pd(IV)化学的部分着重于从这些络合物中进行还原性消除(第5节)。

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