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Amide as an efficient ligand in the palladium-catalyzed Suzuki coupling reaction in water/ethanol under aerobic conditions 被引量:1

Amide as an efficient ligand in the palladium-catalyzed Suzuki coupling reaction in water/ethanol under aerobic conditions
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摘要 Amide,which is derived from proline and is inexpensive and air-stable,has been synthesized and characterized by ~1H NMR,^(13)C NMR,and MS.It was found to be an efficient ligand in the palladium-catalyzed Suzuki cross-coupling reaction.In the Pd/amide catalytic system,aryl bromides can be coupled with phenylboronic acid in ethanol/water(1:2;v/v) in excellent yields even with a low Pd loading of 0.01 mol%.Moreover,the scope of the reaction is broad,and a wide variety of functional groups are tolerant. Amide,which is derived from proline and is inexpensive and air-stable,has been synthesized and characterized by ~1H NMR,^(13)C NMR,and MS.It was found to be an efficient ligand in the palladium-catalyzed Suzuki cross-coupling reaction.In the Pd/amide catalytic system,aryl bromides can be coupled with phenylboronic acid in ethanol/water(1:2;v/v) in excellent yields even with a low Pd loading of 0.01 mol%.Moreover,the scope of the reaction is broad,and a wide variety of functional groups are tolerant.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2011年第6期738-740,共3页 中国化学快报(英文版)
关键词 Suzuki cross-coupling Palladium catalyst Aryl bromides AMIDE WATER Suzuki cross-coupling Palladium catalyst Aryl bromides Amide Water
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  • 1CHAN A W, MORGEN a J. Computer modeling of liquid composite molding for 3-dimesional complex shaped structures [C]// Proceedings 10th ASM/ESD Advanced Composites Conference. Dearborn, USA: [s.n.], 1994: 341-345.
  • 2KANG M K, LEE W I, CHO S M. Simulation of mold filling process during resin transfer molding [J]. Journal of Materials Process and Manufacturing Science, 1995, 3: 291-313.
  • 3BRUSCHKE M V, ADANI S G. A numerical approach to model non-isothermal viscous flow through fibrous media with free surfaces [J]. International Journal of Numerical Method in Fluids, 1994,19: 575-603.
  • 4LIN R J, LEE L J, LIOU M L. Non-isothermal mold filling and curing simulation in thin cavities with prep laced fiber mats [J]. International Polymer Process, 1991, 6(4): 356-369.
  • 5LEE L J, YOUNG W B, LIN R J. Mold filling and curing modeling of RTM and SRIM processes [J]. Com- posite Structure, 1994, 27: 109-120.
  • 6TROCHU F, GAUVIN R, GAO D M. Numerical analysis of the resin transfer molding process by the finite element method [J]. Advances in Polymer Technology, 1993, 12(4): 329-342.
  • 7CHEN Renliang, GUI Bing, CHENG Liming, et al. Nonisothermal mold filling and curing simulation for resin transfer molding [J]. Chinese Journal of the Aeronautics, 2003, 16(4): 247-252.
  • 8GAO D M, TROCHU F, GAUVIN R. Heat transfer analysis of non-isothermal resin transfer molding by the finite element method [J]. Materials and Manufacturing Process, 1995, 10: 57-64.
  • 9LAM Y C, JOSHI S C, LIU X L. Numerical simulation of the mold filling process in resin-transfer molding [J]. Composite Science and Technology, 2000, 60: 845-855.
  • 10LIM S T, LEE W I. An analysis of the three- dimensional resin-transfer mold filling process [J]. Composites Science and Technology, 2000, 60: 961- 975.

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