化学
脱氢
钳子运动
甲醇
催化作用
锰
酒
有机化学
羟醛缩合
冷凝
氢
组合化学
物理
热力学
作者
Feixiang Sun,Xin Chen,Siyi Wang,Fan Sun,Sheng‐Yin Zhao,Weiping Liu
摘要
Herein, we report a manganese-catalyzed three-component coupling of β-H containing alcohols, methanol, and phosphines for the synthesis of γ-hydroxy phosphines via a borrowing hydrogen strategy. In this development, methanol serves as a sustainable C1 source. A variety of aromatic and aliphatic substituted alcohols and phosphines could undergo the dehydrogenative cross-coupling process efficiently and deliver the corresponding β-phosphinomethylated alcohol products in moderate to good yields. Mechanistic studies suggest that this transformation proceeds in a sequential manner including catalytic dehydrogenation, aldol condensation, Michael addition, and catalytic hydrogenation.
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