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Ir-Catalyzed ortho-Borylation of Phenols Directed by Substrate–Ligand Electrostatic Interactions: A Combined Experimental/in Silico Strategy for Optimizing Weak Interactions

机译:受底物-配体静电相互作用指导的Ir催化的邻苯甲酸酯的邻苯甲酰化:优化弱相互作用的组合实验/计算机模拟策略

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摘要

A strategy for affecting ortho versus meta/para selectivity in Ir-catalyzed C–H borylations (CHBs) of phenols is described. From selectivity observations with ArylOBpin (pin = pinacolate), it is hypothesized that an electrostatic interaction between the partial negatively charged OBpin group and the partial positively charged bipyridine ligand of the catalyst favors ortho selectivity. Experimental and computational studies designed to test this hypothesis support it. From further computational work a second generation, in silico designed catalyst emerged, where replacing Bpin with Beg (eg = ethylene glycolate) was predicted to significantly improve ortho selectivity. Experimentally, reactions employing B2eg2 gave ortho selectivities > 99%. Adding triethylamine significantly improved conversions. This ligand– substrate electrostatic interaction provides a unique control element for selective C–H functionalization.
机译:描述了影响酚在Ir催化的C–H硼化(CHB)中邻位/间位/对位选择性的策略。从对ArylOBpin(pin =频哪醇酯)的选择性观察,可以假设部分带负电荷的OBpin基团与部分带正电荷的联吡啶配体之间的静电相互作用有利于邻位选择性。设计用于检验该假设的实验和计算研究支持该假设。通过第二代计算机的进一步计算工作,出现了计算机设计的第二代催化剂,其中预测用Beg(例如,乙二醇酸酯)替代Bpin可显着提高邻位选择性。实验上,采用B2eg2的反应产生的邻位选择性> 99%。加入三乙胺可显着提高转化率。这种配体-底物的静电相互作用为选择性的CH-H功能化提供了独特的控制元素。

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