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Diacetyl as a traceless visible light photosensitizer in metal-free cross-dehydrogenative coupling reactions

机译:二乙酰作为无金属交叉脱氢偶联反应中的无痕可见光光敏剂

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摘要

Minisci alkylation is of prime importance for its applicability in functionalizing diverse heteroarenes, which are core structures in many bioactive compounds. In alkyl radical generation processes, precious metal catalysts, high temperatures and excessive oxidants are generally involved, which lead to sustainability and safety concerns. Herein we report a new strategy using diacetyl (2,3-butanedione) as an abundant, visible light-sensitive and “traceless” hydrogen atom abstractor to achieve metal-free cross-dehydrogenative Minisci alkylation under mild conditions. Mechanistic studies supported hydrogen atom transfer (HAT) between an activated C(sp3)–H substrate and diacetyl. Moreover, with the assistance of di-tert-butyl peroxide (DTBP), the scope of the reaction could be extended to strong aliphatic C–H bonds via diacetyl-mediated energy transfer. The robustness of this strategy was demonstrated by functionalizing complex molecules such as quinine, fasudil, nicotine, menthol and alanine derivatives.
机译:小分子烷基化对于其在官能化各种杂芳烃中的应用至关重要,杂芳烃是许多生物活性化合物的核心结构。在烷基自由基的产生过程中,通常涉及贵金属催化剂,高温和过量的氧化剂,这导致可持续性和安全性问题。本文中,我们报告了一种使用二乙酰(2,3-丁二酮)作为丰富,可见光敏感和“无痕”氢原子提取剂的新策略,以在温和条件下实现无金属的交叉脱氢Minisci烷基化。机理研究支持活化的C(sp 3 )– H底物与二乙酰基之间的氢原子转移(HAT)。此外,借助过氧化二叔丁基(DTBP),反应范围可通过二乙酰基介导的能量转移扩展至强脂族CH键。通过功能化复杂分子(例如奎宁,法舒地尔,尼古丁,薄荷醇和丙氨酸衍生物)证明了该策略的鲁棒性。

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