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介孔碳负载铂催化剂的分散性和电催化活性 被引量:12

Dispersion and Electrocatalytic Performance of Platinum Nanoparticles Supported on Ordered Mesoporous Carbon
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摘要 以介孔硅SBA-15为模板,糠醇为碳源制备了高度有序的介孔碳(CMK-5),并用微波法合成碳负载的铂纳米粒子的催化剂.为改善铂微粒的分散性能,在微波碳载过程中添加了适量的阳离子表面活性剂(CTAB).XRD和TEM测试结果表明,CTAB的加入改善了铂催化剂的分散性,且使铂微粒的平均粒径降至2.9nm左右.循环伏安测试结果显示,加入CTAB后所得Pt/CMK-5催化剂的电化学活性面积大于未加CTAB的以及商业JohnsonMatthey公司的Pt/C催化剂的活性面积. Highly ordered mesoporous carbon, denoted as CMK-5, was synthesized by using mesoporous silicates SBA-15 as template and furfuryl alcohol as carbon precursor. Carbon supported platinum nanoparticles were prepared by a microwave-irradiated polyol process. In order to improve the dispersity of Pt nanoparticles, cationic surfactant (CTAB) as stabilizer was added to the microwave heating process. X-ray diffraction (XRD) and transmission electron microscopy (TEM) images showed that the dispersity of Pt nanoparticles was improved and the particle size of the catalyst was decreased to 2.9 nm with addition of cationic suffactant (CTAB). Cyclic voltammograms showed that the CTAB-stabilized Pt/CMK-5 catalyst exhibited a higher catalytic activity than the catalyst without CTAB or the commercial JM Pt/C catalyst.
出处 《物理化学学报》 SCIE CAS CSCD 北大核心 2007年第7期1085-1089,共5页 Acta Physico-Chimica Sinica
基金 江苏省高新技术项目(BG2005009)资助
关键词 SBA-15 介孔碳CMK-5 微波 阳离子表面活性剂 Pt/CMK-5催化剂 CTAB SBA-15 Mesoporous carbon CMK-5 Microwave Cationic suffactant Pt/CMK-5 catalyst CTAB
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  • 1Ryoo, R.; Joo, S. H. J. Phys. Chem. B, 1999, 103(37): 7743
  • 2Jun, S.; Joo, S. H.; Ryoo, R.; Kruk, M.; Jaroniec, M.; Liu, Z.;Ohsuna, T.; Terasaki, O. J. Am. Chem. Soc., 2000, 122(43): 10712
  • 3Kruk, M.; Jaroniec, M.; Kim, T. W.; Ryoo, R. Chem. Mater., 2003, 15(14): 2815
  • 4Zhang, F. Q.; Meng, Y.; Gu, D.; Yan, Y.; Yu, C. Z.; Tu, B.; Zhao, D. J. Am. Chem. Soc., 2005, 127(39): 13508
  • 5Lu, A. H.; Schmidt, W.; Spliethoff, B. Adv. Mater., 2003, 15(19): 1602
  • 6Lu, A. H.; Li, W. C.; Schmidt, W.; Schuth, F. Microporous and Mesoporous Materials, 2005, 80(1-3): 117
  • 7Joo, S. H.; Choi, S. J.; Oh, I.; Kwak, J.; Liu, Z.; Terasaki, O.; Ryoo, R. Nature, 2001, 412(6843): 169
  • 8Nam, J. H.; Jang, Y. Y.; Kwon, Y. U.; Nam, J. D. Electrochemistry Communications, 2004, 6(7): 737
  • 9Ding, J.; Chan, K. Y.; Ren, J. W.; Xiao, F. S. Electrochimica Acta, 2005, 50(15): 3131
  • 10Choi, W. C.; Woo, S. I.; Jeon, M. K.; Sohn, J. M.; Kim, M. R.; Jeon, H. J. Adv. Mater., 2005, 17(4): 446

二级参考文献43

  • 1周振华 周卫江 辛勤 孙公权 李文震.2001,5.
  • 2魏昭彬 刘建国 乔亚光 周卫江 李文震 陈利康 辛勤 衣宝廉(Wei Zh B Liu J G Qiao Y G Zhou W J Li W Zh Chen L K Xin Q Yi B L).电化学(Electrochemistry),2001,7(2):228-228.
  • 3Hamnett A. Catal Today, 1997, 38(4) : 445.
  • 4McNicol B D, Rand D A J, Williams K R. J Power Sources, 1999, 83(1/2): 15.
  • 5Wasmus S, Küver A. J Electroanal Chem, 1999, 461(1/2) : 14.
  • 6Arico A S, Srinivasan S, Antonucci V. Fuel Cells, 2001,2(1): 1.
  • 7Ren X M, Zelenay P, Thomas A, Davey J, Gottesfeld S. J Power Sources, 2000, 86(1/2) : 111.
  • 8Scott K, Taama W M, Argyropoulos P. J Power Sources,1999, 79(1): 43.
  • 9Trapp V, Christensen P, Hamnett A. J Chem Soc, Faraday Trans, 1996, 92(21): 4311.
  • 10Reeve R W, Christensen P A, Hamnett A, Haydock S A,Roy S C. J Electrochem Soc, 1998, 145(10): 3463.

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