Catalytic Activity of SWNTs/Pd Catalyst in Suzuki Reaction

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Abstract:

Pd catalyst is very active in Suzuki reaction. As a heterogeneous catalyst, SWNTs/Pd shows highly catalytic ability with Suzuki reaction. We will demonstrate the effect of catalyst’s amount, the reaction time and temperature on Suzuki reaction in this work. In comparison, a control experiment used commercial Pd/C as catalyst in Suzuki reaction has been done. An optimum reaction condition of about reacting 60 min at 50°C with 5% (mass%) catalyst is confirmed finally, and a better catalytic ability of SWNTs/Pd than commercial Pd/C is also observed.

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Advanced Materials Research (Volumes 284-286)

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2404-2408

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July 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] N. Miyaura, T. Yanagi, A. Suzuki. Synthetic Communications [J], 1981, 11(7): 513-519

Google Scholar

[2] N. Miyaura, A. Suzuki. Chemical Reviews [J], 1995, 95(7): 2457-2483

Google Scholar

[3] A. Suzuki. Journal of Organometallic Chemistry [J], 1999, 576(1-2): 147-168

Google Scholar

[4] A. Suzuki. Proceedings of The Japan Academy Series B [J], 2004, 80(8): 359-371

Google Scholar

[5] S. Kotha, K. Lahiri, D. Kashinath. Tetrahedron [J] , 2002, 58(48): 9633-9695

DOI: 10.1016/s0040-4020(02)01188-2

Google Scholar

[6] W. A. Herrmann, C. P. Reisinger, M. Spiegler. Journal of Organometallic Chemistry [J], 1998, 557(1):93-96

Google Scholar

[7] T. Weakamp, V. P. W. Bohm, W. A. Herrmann. Journal of Organometallic Chemistry [J],1999,585(2):348-352

Google Scholar

[8] A. F. Littke, G. C. Fu. Angewandte Chemie International Edition [J], 1998, 37(24): 3387-3388

Google Scholar

[9] J. P. Wolfe, I. A. Singer, B. H. Yang, S. L. Buchwald. Journal of the American Chemical Society [J], 1999, 121(41): 9550-9561

Google Scholar

[10] D. A. Albisson, R. B. Bedford, S. E. Lawrence, P. N. Scully. Chemical Communications[J], 1998,19:2095-2096

Google Scholar

[11] R. B. Bedford, S. M. Draper, P. N. Scully, S. L. Welch. New Journal of Chemistry[J],2000, 24(10): 745-747

Google Scholar

[12] C. Dupuis, K. Adiey, L. Charruault, V. Michelet, M. Savignac, J. P. Genet. Tetrahedron Letters [J], 2001, 42(37): 6523-6526

DOI: 10.1016/s0040-4039(01)01301-6

Google Scholar

[13] J. H. Kim, J. W. Kim, M. Shokouhimehr, Y. S. Lee. The Journal of Organic Chemistry[J], 2005, 70(17): 6714-6720

Google Scholar

[14] L. Liu, Y. Zhang, Y. Wang. The Journal of Organic Chemistry[J], 2005, 70(15): 6122-6125

Google Scholar

[15] S. P. Stanforth. Tetrahedron [J], 1998, 54(3-4): 263-303

Google Scholar

[16] X. W. Zhao, Y. C. Cui, J. W. Zhang. Chinese Journal of Organic Chemistry[J], 2007,27(5): 597-601

Google Scholar

[17] I. Fenger, C. L. Drain. Tetrahedron Letters[J], 1998, 39(24): 4287-4290

Google Scholar

[18] C. A. Parrish, S. L. Buchwald. The Journal of Organic Chemistry[J], 2001, 66, 3820

Google Scholar

[19] H. J. Li, L. Feng, L. H. Guan, Z. J. Shi, Z. N. Gu. Solid State Communications [J], 2004; 132(3-4): 219-244

Google Scholar

[20] Z. J. Shi, Y. F. Lian, F. H. Liao, X. H. Zhou, Z. N. Gu. Zhang, Y. G.; Iijima, S. Solid State Communications[J], 1999, 112(1): 35-37

DOI: 10.1016/s0038-1098(99)00278-1

Google Scholar

[21] A. S. Aricò, A. K. Shukla, H. Kim, S. Park, M. Min, V. Antonucci. Applied Surface Science[J], 2001, 172(1-2): 33-40

Google Scholar

[22] Y. C. Cui, X. W. Zhao, J. W. Zhang, L. Zhang, X. M. Liu. Acta Chimica Sinica, 2006, 64(1): 42-46

Google Scholar

[23] J. X. Liu, W. Jiang, Z. S. Wang, Y. Liu, P. Cui,Cui, P. F. S. Li. Rare Metal Materials and Engineering[J], 2008, 37(8): 1364-1368

Google Scholar