以新制备的过氧钨酸和酚醛树脂为原料合成碳化钨(WC)前驱体,分别以H2和Ar为还原及保护气体,原位碳化制备纳米WC粉体.使用FTIR、XRD及SEM对试样的理化特性进行表征,并采用循环伏安法测试Pt/WC复合材料的电化学催化活性及其稳定性.结果表明,实现了低温原位碳化制备纯度高的纳米WC粉体,粉体颗粒粒径为15~100nm,颗粒形貌近似球形.WC可与Pt协同作用加强H2的电催化氧化作用,10%Pt/WC(质量分数)展现了较好的催化稳定性和活性,其电流密度可达49.58mA/cm2.
参考文献
[1] | Ganesan R;Ham DJ;Lee JS .Platinized mesoporous tungsten carbide for electrochemical methanol oxidation[J].Electrochemistry communications,2007(10):2576-2579. |
[2] | Watanabe M;Uchida M;Motoo S .Preparation of highly dispersed Pt+Ru clusters and the activity for the electro-oxidation of methanol[J].Journal of Electroanalytical Chemistry,1987,229:395. |
[3] | Jeon MK;Won JY;Lee KR;Woo SI .Highly active PtRuFe/C catalyst for methanol electro-oxidation[J].Electrochemistry communications,2007(9):2163-2166. |
[4] | Sriramulu S;Jarvi T D;Stuve E M .Reaction mechanism and dynamics of methanol electrooxidation on platinum (111)[J].Journal of Electroanalytical Chemistry,1999,467(1-2):132. |
[5] | Cooper JS;Jeon MK;McGinn PJ .Combinatorial screening of ternary Pt-Ni-Cr catalysts for methanol electro-oxidation[J].Electrochemistry communications,2008(10):1545-1547. |
[6] | Levy R B;Boudart M.Platinum-like behavior of tungsten carbide in surface catalysis[J].Science,1973(181):547. |
[7] | 肖秀峰,刘榕芳,朱则善.Ni-W-WC复合电极在碱性介质中的电催化析氢[J].物理化学学报,1999(08) |
[8] | Henry H.Hwu;Jinguang G.Chen .Surface Chemistry of Transition Metal Carbides[J].Chemical Reviews,2005(1):185-212. |
[9] | Weigert E C;Stottlemyer A L;Zellner M B et al.Tungsten monocarbide as potential replacement of platinum for methanol electrooxidation[J].Journal of Physical Chemistry C,2007,111:14617. |
[10] | Bennett L H;McNister A J;Cuthill J R et al.Electronic and catalytic properties of refractory hard metals[J].Journal of Molecular Catalysis,1977,2(03):203. |
[11] | 盛江峰,马淳安,张诚,李国华.碳化钨负载纳米铂催化剂的制备及其析氢催化性能[J].物理化学学报,2007(02):181-186. |
[12] | Kunchan Lee;Akimitsu Ishihara;Shigenori Mitsushima;Nobuyuki Kamiya;Ken-ichiro Ota .Stability and electrocatalytic activity for oxygen reduction in WC + Ta catalyst[J].Electrochimica Acta,2004(21):3479-3485. |
[13] | Michael J Hudson;John W Peckett;Peter J F Harris .Lowtemperature sol-gel preparation of ordered nanoparticles of tungsten carbide/oxide[J].Industrial and Engineering Chemistry Research,2005,44:5575. |
[14] | 范景莲,黄伯云,汪登龙,曲选辉.纳米晶难熔金属高密度钨合金的研究现状及应用发展前景[J].粉末冶金技术,2001(04):238-241. |
[15] | Meng H;Shen PK .The beneficial effect of the addition of tungsten carbides to Pt catalysts on the oxygen electroreduction[J].Chemical communications,2005(35):4408-4410. |
[16] | 顾翼东.粉状白钨酸的制备[J].高等学校化学学报,1982(01):137. |
[17] | 梁英教;车荫昌.无机物热力学数据手册[M].沈阳:东北大学出版社,1993:412. |
[18] | 张立德.超微粉体的制备与应用技术[M].北京:中国石化出版社,2001 |
[19] | 王伟,薛涛,金志浩,乔冠军.一种新型多孔SiC的制备与性能研究[J].无机材料学报,2008(01):109-113. |
[20] | Sasikumar G;Ihm J W;Ryu H .Dependence of optimum Nafion content in catalyst layer on platinum loading[J].Journal of Power Sources,2004,132:11. |
[21] | Boudart M;Djega-Mariadassou G M.Kinetics of heterogeneous catalytic reactions[M].Princeton,New Jersey:Princeton University Press,1982:162. |
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