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Selective Dealkenylative Functionalization of Styrenes via C-C Bond Cleavage

机译:通过C-C键切割的选择性促丁烯酯官能化

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摘要

As a readily available feedstock, styrene with about 25 million tons of global annual production serves as an important building block and organic synthon for the synthesis of fine chemicals, polystyrene plastics, and elastomers. Thus, in the past decades, many direct transformations of this costless styrene feedstock were disclosed for the preparation of high-value chemicals, which to date, generally performed on the functionalization of styrenes through the allylic C-H bond, C(sp2)-H bond, or the C=C double bond cleavage. However, the dealkenylative functionalization of styrenes via the direct C-C single bond cleavage is so far challenging and still unknown. Herein, we report the novel and efficient C-C amination and hydroxylation reactions of styrenes for the synthesis of valuable aryl amines and phenols via the site-selective C(Ar)-C(alkenyl) single bond cleavage. This chemistry unlocks the new transformation and application of the styrene feedstock and provides an efficient protocol for the late-stage modification of substituted styrenes with the site-directed dealkenylative amination and hydroxylation.
机译:作为一种易于使用的原料,苯乙烯,全球年产约2500万吨的全球年产量是一个重要的构建块和有机合成块,用于合成精细化学品,聚苯乙烯塑料和弹性体。因此,在过去的几十年中,公开了这种无成本苯乙烯原料的许多直接转化,用于制备迄今为止的高价值化学品,通常通过烯丙基CH键对苯乙烯的官能化进行C(SP2)-H键对,或c = c双键切割。然而,通过直接C-C单键裂解苯乙烯的癸烯醇化官能化是迄今为止挑战性且仍然未知。在此,我们通过位点选择性C(Ar)-C(链烯基)单键切割,报告了苯乙烯的新颖和有效的C-C胺化和羟基化反应的苯乙烯对有价值的芳基胺和酚的羟基化反应。该化学解除了苯乙烯原料的新转化和施加,为取代苯乙烯的后期改性提供了一种有效的方案,具有定向的促甲烯醇化胺化和羟基化。

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