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Rational Development of Remote C-H Functionalization of Biphenyl: Experimental and Computational Studies

机译:联苯的远程C-H官能化的理性发展:实验和计算研究

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摘要

A simple and efficient nitrile-directed meta-C-H olefination, acetoxylation, and iodination of biaryl compounds is reported. Compared to the previous approach of installing a complex U-shaped template to achieve a molecular U-turn and assemble the large-sized cyclophane transition state for the remote C-H activation, a synthetically useful phenyl nitrile functional group could also direct remote meta-C-H activation. This reaction provides a useful method for the modification of biaryl compounds because the nitrile group can be readily converted to amines, acids, amides, or other heterocycles. Notably, the remote meta-selectivity of biphenylnitriles could not be expected from previous results with a macrocyclophane nitrile template. DFT computational studies show that a ligand-containing Pd-Ag heterodimeric transition state (TS) favors the desired remote meta-selectivity. Control experiments demonstrate the directing effect of the nitrile group and exclude the possibility of non-directed meta-C-H activation. Substituted 2-pyridone ligands were found to be key in assisting the cleavage of the meta-C-H bond in the concerted metalation-deprotonation (CMD) process.
机译:据报道了一种简单且有效的氮化的氮化的Meta-C-C-H烯烯醇化,乙酰氧基化和碘化芳基化合物。与先前的安装复合U形模板的方法相比,以实现分子掉转和组装远程CH激活的大尺寸环烷过渡状态,合成有用的苯基丁腈官能团也可以直接远程Meta-Ch激活。该反应提供了一种有用的方法,用于改性芳基化合物,因为腈基可以容易地转化为胺,酸,酰胺或其他杂环。值得注意的是,通过宏键烷烷腈模板预期先前的结果,不能预期联苯基腈的远程荟萃选择性。 DFT计算研究表明,含配体的PD-Ag异二聚体过渡状态(TS)涉及所需的远程间选择性。对照实验证明丁腈基团的引导效果,排除了非指导的Meta-C-H活化的可能性。发现取代的2-吡啶酮配体是辅助齐全的金属化 - 去质子化(CMD)方法中的Meta-C-H键的裂解。

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