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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Kinetico-mechanistic studies of cyclometalating C-H bond activation reactions on Pd(II) and Rh(II) centres: The importance of non-innocent acidic solvents in the process
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Kinetico-mechanistic studies of cyclometalating C-H bond activation reactions on Pd(II) and Rh(II) centres: The importance of non-innocent acidic solvents in the process

机译:在Pd(II)和Rh(II)中心进行环金属化C-H键活化反应的动力学力学研究:非纯酸性溶剂在此过程中的重要性

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摘要

The activation of C-H bonds in homogeneous systems has been the subject of study for many years due to its involvement in important industrial catalytic processes. A large number of reviews on the different areas involved have appeared, but those dealing with kinetic studies, including activation parameters, are rather scarce due to the severe difficulties in interpreting experimental data. In this perspective, the information available from kinetico-mechanistic studies of cyclometalation reactions on Pd(II) and Rh(II) centres via C-H bond activation is considered. Experimental results from studies performed on complexes of these metal centres indicate that the historically accepted electrophilic substitution classification is not a satisfactory mechanistic term for the process occurring during the reaction. A definite acid-assisted phenomenon is evident for all the processes studied, which contradicts the expected need for a proton abstractor in the reaction. This is even more surprising when considering the expected hydrolysis of M-C bonds in such acidic media, indicating that metalation prevails under these conditions. Only the presence of coordinated acid molecules in solvolytic carboxylic acid media can explain the observations. The fine tuning between the proton abstraction capacity of a coordinated RCO2H molecule and its Lewis basicity results in a unique reactivity trend. DFT calculations carried out for these acid-assisted processes fully agree with the experimental trends observed.
机译:均相系统中C-H键的活化由于涉及重要的工业催化过程,因此一直是研究的主题。已经出现了涉及不同领域的大量评论,但是涉及动力学研究(包括激活参数)的评论由于解释实验数据的严重困难而很少。从这个角度出发,考虑了可通过C-H键活化作用在Pd(II)和Rh(II)中心进行环金属化反应的动力学机理的信息。对这些金属中心的络合物进行的研究实验结果表明,历史上公认的亲电取代分类对于反应过程中发生的过程而言并不是令人满意的机理术语。在所研究的所有过程中均存在明确的酸辅助现象,这与反应中质子提取剂的预期需求相矛盾。当考虑到在这种酸性介质中预期的M-C键水解时,这甚至更加令人惊讶,表明在这些条件下金属化占主导。溶剂化羧酸介质中只有配位酸分子的存在才能解释这些发现。协调的RCO2H分子的质子提取能力与其Lewis碱度之间的微调导致独特的反应性趋势。对这些酸辅助过程进行的DFT计算与观察到的实验趋势完全吻合。

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