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催化学报  2014 

海蛎壳粉废弃物负载CuCl2作为高效、廉价以及可回收催化剂合成炔胺类化合物

DOI: 10.1016/S1872-2067(14)60195-9, PP. 2006-2013

Keywords: 炔胺类化合物,A3偶联反应,海蛎壳废弃物,微波辐射,绿色化学

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Abstract:

?发展了一种经济、简单的海蛎壳粉负载的CuCl2异相催化剂OSP-CuCl2,用来催化醛-炔-胺之间的A3偶联反应.OSP-CuCl2容易通过简单的方法从海蛎壳粉以及CuCl2制备,且显示出高的催化活性以及良好的可循环回收性.在微波辅助以及无溶剂条件下,以OSP-CuCl2为催化剂,能够以高产物收率制备出一系列炔胺类化合物.OSP-CuCl2可通过简单的过滤方式进行回收,并至少可循环使用6次.初步放大实验表明,炔胺类化合物能够以150mmol的规模制备(87%收率).

References

[1]  Zani L, Bolm C. Chem Commun, 2006: 4263
[2]  Konishi M, Ohkuma H, Tsuno T, Oki T, VanDuyne G D, Clardy J. J Am Chem Soc, 1990, 112: 3715
[3]  Hu T S, Tannert R, Arndt H D, Waldmann H. Chem Commun, 2007: 3942
[4]  Jeon H B, Lee Y, Qiao C, Huang H, Sayre L M. Bioorg Med Chem, 2003, 11: 4631
[5]  Peshkov V A, Pereshivko O P, Van der Eycken E V. Chem Soc Rev, 2012, 41: 3790
[6]  Zhang X, Corma A. Angew Chem Int Ed, 2008, 47: 4358
[7]  Layek K, Chakravarti R, Kantam M L, Maheswaran H, Vinu A. Green Chem, 2011, 13: 2878
[8]  Maggi R, Bello A, Oro C, Sartori G, Soldi L. Tetrahedron, 2008, 64: 1435
[9]  Jeganathan M, Dhakshinamoorthy A, Pitchumani K. ACS Sustainable Chem Eng, 2014, 2: 781
[10]  Chen W W, Nguyen R V, Li C J. Tetrahedron Lett, 2009, 50: 2895
[11]  Eagalapati N P, Rajack A, Murthy Y L N. J Mol Catal A, 2014, 381: 126
[12]  Karimi B, Gholinejad M, Khorasani M. Chem Commun, 2012, 48: 8961
[13]  Patil M K, Keller M, Reddy B M, Pale P, Sommer J. Eur J Org Chem, 2008: 4440
[14]  Reddy K M, Babu N S, Suryanarayana I, Prasad P S S, Lingaiah N. Tetrahedron Lett, 2006, 47: 7563
[15]  Salam N, Kundu S K, Roy A S, Mondal P, Roy S, Bhaumik A, Islam S K M. Catal Sci Technol, 2013, 3: 3303
[16]  Yang J, Li P H, Wang L. Catal Commun, 2012, 27: 58.
[17]  Salam N, Sinha A, Roy A S, Mondal P, Jana N R, Islam S K M. RSC Adv, 2014, 4: 10001
[18]  Smith S M, Oopathum C, Weeramongkhonlert V, Smith C B, Chaveanghong S, Ketwong P, Boonyuen S. Bioresour Technol, 2013, 143: 686
[19]  Kuo W T, Wang H Y, Shu C Y, Su D S. Constr Build Mater, 2013, 46: 128
[20]  Hsu T C. J Hazard Mater, 2009, 171: 995
[21]  Yang C R, Ko T H, Lin Y C, Lee S Z, Chang Y F, Hsueh H T. Environ Chem Lett, 2013, 11: 33
[22]  Tsugawa N, Okano T, Higashino R, Kimura T, Oshio Y, Teraoka Y, Igarashi C, Ezawa I, Kobayashi T. Biol Pharm Bull, 1995, 18: 677
[23]  Lidstrom P, Tierney J, Wathey B, Westman J. Tetrahedron, 2001, 57: 9225
[24]  Xiong X Q, Cai L, Tang Z K. Chin J Org Chem (熊兴泉, 蔡雷, 唐忠科. 有机化学), 2012, 32: 1410
[25]  Shi L, Tu Y Q, Wang M, Zhang F M, Fan C A. Org Lett, 2004, 6: 1001
[26]  Bariwal J B, Ermolat'ev D S, Van der Eycken E V. Chem Eur J, 2010, 16: 3281
[27]  Xiong X Q, Chen H X, Zhu R J. Catal Commun, 2014, 2014, 54: 94
[28]  Xiong X Q, Cai L. Catal Sci Technol, 2013, 3: 1301
[29]  Xiong X Q, Chen H X, Tang Z K, Jiang Y B. RSC Adv, 2014, 4: 9830
[30]  Xiong X Q, Cai L, Jiang Y B, Han Q. ACS Sustainable Chem Eng, 2014, 2: 765

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