硼酸化
化学
脱羧
烷基
组合化学
有机硼化合物
氧化脱羧
功能群
基质(水族馆)
氧化还原
有机化学
硼酸
烯烃
氧化磷酸化
电泳剂
氧化加成
羧酸
反应性(心理学)
继电器
立体化学
小学(天文学)
硝基苯
作者
Chen Zhao,Meiyu Luo,Beibei Zhang,Da Zhao
摘要
Alkyl boronic acids and esters are indispensable building blocks in synthesis, medicinal chemistry, and materials science, yet direct access to structurally diverse alkyl organoboron compounds remains scarce. Carboxylic acids would be ideal precursors owing to their abundance and structural diversity, but their direct conversion into organoboron compounds remains elusive. This longstanding challenge stems from an intrinsic redox incompatibility between oxidative decarboxylation and conventional borylation chemistry. Here, we report a direct decarboxylative borylation of native carboxylic acids enabled by a radical-organometallic relay strategy. The reaction proceeds without substrate preactivation and is applicable to primary, secondary, and tertiary carboxylic acids, exhibiting broad functional group tolerance and enabling late-stage borylation of pharmaceuticals and peptides. By resolving a fundamental redox incompatibility, this work establishes a new reaction paradigm in which oxidative radical generation is directly integrated with organometallic C-B bond formation.
科研通智能强力驱动
Strongly Powered by AbleSci AI