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钯和金纳米管作为氧还原反应和醇氧化反应在碱性中的催化剂。

Palladium and gold nanotubes as oxygen reduction reaction and alcohol oxidation reaction catalysts in base.

机构信息

Department of Chemical Engineering, University of Delaware, Newark, DE 19716 (USA), Fax: (+1) 302-831-1048; Department of Chemical and Environmental Engineering, University of California, Riverside, Riverside, CA 92521 (USA).

出版信息

ChemSusChem. 2014 Jun;7(6):1739-44. doi: 10.1002/cssc.201400129. Epub 2014 Apr 23.

Abstract

Palladium (PdNTs) and gold nanotubes (AuNTs) were synthesized by the galvanic displacement of silver nanowires. PdNTs and AuNTs have wall thicknesses of 6 nm, outer diameters of 60 nm, and lengths of 5-10 and 5-20 μm, respectively. Rotating disk electrode experiments showed that the PdNTs and AuNTs have higher area normalized activities for the oxygen reduction reaction (ORR) than conventional nanoparticle catalysts. The PdNTs produced an ORR area activity that was 3.4, 2.2, and 3.7 times greater than that on carbon-supported palladium nanoparticles (Pd/C), bulk polycrystalline palladium, and carbon-supported platinum nanoparticles (Pt/C), respectively. The AuNTs produced an ORR area activity that was 2.3, 9.0, and 2.0 times greater than that on carbon-supported gold nanoparticles (Au/C), bulk polycrystalline gold, and Pt/C, respectively. The PdNTs also had lower onset potentials than Pd/C and Pt/C for the oxidation of methanol (0.236 V), ethanol (0.215 V), and ethylene glycol (0.251 V). In comparison to Pt/C, the PdNTs and AuNTs further demonstrated improved alcohol tolerance during the ORR.

摘要

钯纳米管(PdNTs)和金纳米管(AuNTs)是通过银纳米线的电置换合成的。PdNTs 和 AuNTs 的壁厚为 6nm,外径为 60nm,长度分别为 5-10μm 和 5-20μm。旋转圆盘电极实验表明,PdNTs 和 AuNTs 的氧还原反应(ORR)面积归一化活性高于传统的纳米粒子催化剂。PdNTs 产生的 ORR 面积活性分别比碳载钯纳米粒子(Pd/C)、多晶块状钯和碳载铂纳米粒子(Pt/C)高 3.4、2.2 和 3.7 倍。AuNTs 产生的 ORR 面积活性分别比碳载金纳米粒子(Au/C)、多晶块状金和 Pt/C 高 2.3、9.0 和 2.0 倍。PdNTs 的甲醇(0.236V)、乙醇(0.215V)和乙二醇(0.251V)氧化的起始电位也低于 Pd/C 和 Pt/C。与 Pt/C 相比,PdNTs 和 AuNTs 在 ORR 过程中进一步表现出对醇的耐受性提高。

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