Tao Bin, Boykin David W
Department of Chemistry, MSC 8L0378, Georgia State University, 33 Gilmer Street, SE Unit 8, Atlanta, Georgia 30303-3088, USA.
J Org Chem. 2004 Jun 25;69(13):4330-5. doi: 10.1021/jo040147z.
A new palladium catalyst (DAPCy) made from Pd(OAc)(2) and commercially available, inexpensive dicyclohexylamine has been developed for the Suzuki coupling reaction of aryl bromides with boronic acids to give the coupling products in good to high yields. The air-stable catalyst was characterized and well-defined by X-ray crystallography. A catalytic system involving DAPCy in dioxane demonstrates a temperature-dependent reactivity toward aryl bromides with different electronic substituents, and selectively couples electron-deficient aryl bromides with boronic acids over electron-rich ones at room temperature. Another catalytic system employing DAPCy in EtOH provides a general and convenient method to prepare biaryls from aryl bromides and boronic acids with a broad range of functional groups at room temperature and under aerobic conditions.
一种由醋酸钯(Pd(OAc)₂)和市售廉价二环己胺制成的新型钯催化剂(DAPCy)已被开发用于芳基溴化物与硼酸的铃木偶联反应,以高产率得到偶联产物。该空气稳定的催化剂通过X射线晶体学进行了表征和明确界定。在二氧六环中涉及DAPCy的催化体系对具有不同电子取代基的芳基溴化物表现出温度依赖性反应性,并且在室温下能选择性地使缺电子芳基溴化物与硼酸发生偶联,而富电子芳基溴化物则不发生反应。另一种在乙醇中使用DAPCy的催化体系提供了一种通用且便捷的方法,可在室温及有氧条件下,由具有广泛官能团的芳基溴化物和硼酸制备联芳基化合物。