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醇在载钯碳化钨/碳纳米管催化剂上的氧化
引用本文:胡西多,曾志锋,胡风平,王敬国,沈培康.醇在载钯碳化钨/碳纳米管催化剂上的氧化[J].催化学报,2008,29(10).
作者姓名:胡西多  曾志锋  胡风平  王敬国  沈培康
作者单位:1. 东莞理工学院电子工程系,广东东莞,523106
2. 中山大学光电材料与技术国家重点实验室,物理科学与工程技术学院,广东广州,510275
3. 东莞市迈科科技有限公司,广东东莞,523700
基金项目:东莞市科技专项基金,广东省科技厅科技计划,广东省广州市科技计划
摘    要:用交替微波法制备了碳化钨与多壁碳纳米管复合材料(WC/MWCNT),以该材料为载体制备了Pd基催化剂(Pd-WC/MWCNT),并将催化剂用于醇的催化氧化反应.结果表明,Pd-WC/MWCNT催化剂对乙醇的催化氧化活性是Pd/C催化剂的5倍.交换电流密度测量和反应活化能计算表明,Pd-WC/WIWCNT催化剂对乙醇催化氧化的交换电流密度比Pd/C大两个数量级,反应活化能低一倍以上.Pd-WC/MWCNT催化剂催化氧化乙醇性能的大幅度提高是碳化钨与Pd颗粒的协同效应和碳纳米管的结构效应共同作用的结果.

关 键 词:碳纳米管  碳化钨    交替微波法  乙醇氧化  燃料电池

Alcohol Oxidation on Pd Catalyst Supported on Tungsten Carbides/Carbon Nanotubes
HU Xiduo,ZENG Zhifeng,HU Fengping,WANG Jingguo,SHEN Peikang.Alcohol Oxidation on Pd Catalyst Supported on Tungsten Carbides/Carbon Nanotubes[J].Chinese Journal of Catalysis,2008,29(10).
Authors:HU Xiduo  ZENG Zhifeng  HU Fengping  WANG Jingguo  SHEN Peikang
Abstract:A material of tungsten carbides on multiwalled carbon nanotubes(WC/MWCNT)was prepared by an intermittent microwave heating method and used as the support to load Pd nanoparticles(Pd-WC/MWCNT)for alcohol oxidation.Different surface,morphological,and electrochemical techniques were used to characterize the physical and catalytic properties of the novel catalysts.Pd/C,Pd/MWCNT,and Pd-WC/C catalysts were also prepared for comparison.The Pd-WC/MWCNT catalyst shows five times higher catalytic activity for ethanol oxidation compared to the Pd/C catalyst.Pd-WC/MWCNT is two orders higher in exchange current density and over one time lower in activation energy than the Pd/C catalyst.This proves the fast kinetics of the Pd-WC/MWCNT catalyst for the oxidation of ethanol in alkaline solution.The Pd-WC/MWCNT catalyst is also highly active for the oxidation of ethylene glycol and methanol.However,the oxidation of ethanol gives the lowest onset potential.The enhancement in the catalytic activity is believed due to synergistic effect between Pd nanoparticles and the tungsten carbides and the structure effect of the carbon nanotubes.
Keywords:carbon nanotube  tungsten carbide  palladium  intermittent microwave heating  ethanol oxidation  fuel cell
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