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Nanosized Rh grown on single-walled carbon nanohorns for efficient methanol oxidation reaction 被引量:7

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摘要 Reasonable design and controllable synthesis of non-Pt catalysts with high methanol oxidation activity are regarded as a valid way to promote the large-scale com-mercial applications of direct methanol fuel cells(DMFCs).Herein,we develop a convenient and cost-ef-fective approach to the successful fabrication of nanosized Rh grown on single-walled carbon nanohorns(Rh/SWCNH)as anode catalysts for DMFCs.The unique architectural configuration endows the as-obtained hybrids with a series of intriguing structural merits,including large specific surface areas,abundant opened holes,optimized electronic structures,homogeneous Rh dispersion,and good electrical conductivity.As a consequence,the resulting Rh/SWCNH catalysts exhibit exceptional elec-trocatalytic properties in terms of a large electrochemically active surface area of 102.5 m^(2)·g^(-1),a high mass activity of 784.0 mA·mg^(-1),as well as reliable long-term durability towards the methanol oxidation reaction in alkaline media,thereby holding great potential as alternatives for com-mercial Pt/carbon black and Pd/carbon black catalysts.
出处 《Rare Metals》 SCIE EI CAS CSCD 2022年第6期2108-2117,共10页 稀有金属(英文版)
基金 financially supported by the National Natural Science Foundation of China (No.51802077) the Fundamental Research Funds for the Central Universities (No. B210202093)
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  • 1Dillon R, Srinivasan S, Arico A, Antonucci V. International activities in DMFC R&D: status of technologies and potential applications. J Power Sour. 2004, 127(1): 112.
  • 2Li L, Xing YC. Pt-Ru nanoparticles supported on carbon nanotubes as methanol fuel cell catalysts. J Phys Chem C. 2007, 111 (6):2803.
  • 3Bensebaa F, Farah AA, Wang D, Bock C, Du XM, Kung J, Le Page Y. Microwave synthesis of polymer-embedded Pt-Ru catalyst for direct methanol fuel cell. J Phys Chem B. 2005, 109(32): 15339.
  • 4Varcoe JR, Slade RC, Yee ELH. An alkaline polymer electro- chemical interface: a breakthrough in application of alkaline anion-exchange membranes in fuel cells. Chem Commun. 2006, 13:1428.
  • 5Pan J, Lu SF,Li Y, Huang AB, Zhuang L, Lu JT. High-per- formance alkaline polymer electrolyte for fuel cell applications. Adv Funct Mater. 2010,20(2):312.
  • 6Zhao YC, Zhan L, Tian JN, Nie SL, Ning Z. Enhanced elec- trocatalytic oxidation of methanol on Pd/polypyrrole-graphene in alkaline medium. Electrochim Acta. 2011,56(5):1967.
  • 7Gao SY, Wu DS, Cao MN, Cao R. Self-assembled Pd-dicya- nobiphenyl multilayer films and their application in electrocat- alytic oxidation of methanol in alkaline medium. Thin Solid Films. 2012,524:173.
  • 8Ha S, Larsen R, Masel RI. Performance characterization of Pd/C nanocatalyst for direct formic acid fuel cells. J Power Sour. 2005, 144(1):28.
  • 9Wang M, Guo D J, Li HL. High activity of novel Pd/TiO2 nanotube catalysts for methanol electro-oxidation. J Solid State Chem. 2005,178(6):1996.
  • 10Shen PK, Xu CW, Zeng R, Liu YL. Electro-oxidation of methanol on NiO-promoted Pt/C and Pd/C catalysts. Electro- chem Solid State. 2006,9(2):A39.

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