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铂基Pb-Sb表面合金电催化剂的制备与结构表征 被引量:2
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作者 夏盛清 陈声培 孙世刚 《物理化学学报》 SCIE CAS CSCD 北大核心 2001年第2期134-139,共6页
通过电化学方法,在玻碳载体表面制备以 Pt、 Pb、 Sb为主要成分的铂基 Pb-Sb表面合金电催化剂 .运用电化学循环伏安、石英晶体微天平( EQCM)和扫描隧道显微镜( STM)技术对催化剂电极进行表征 .结果表明:酸性溶液中在所制备的表面... 通过电化学方法,在玻碳载体表面制备以 Pt、 Pb、 Sb为主要成分的铂基 Pb-Sb表面合金电催化剂 .运用电化学循环伏安、石英晶体微天平( EQCM)和扫描隧道显微镜( STM)技术对催化剂电极进行表征 .结果表明:酸性溶液中在所制备的表面合金电极上,析氢起始电位负移至- 0.45 V,表面合金的起始氧化电位为 0.15 V,其稳定性明显高于电催化还原中常用的铅、锑等金属电极 .通过 EQCM研究表面合金电极的形成过程,结合 STM观察和 XPS深度剖析,确定电催化剂表面是由粒度均匀的纳米颗粒构成的表面合金层 . 展开更多
关键词 表面合金 铂基铅锡表面合金催化剂 制备 结构表征
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Series Reports from Professor Wei's Group of Chongqing University:Advancements in Electrochemical Energy Conversions(1/4):Report 1:High-performance Oxygen Reduction Catalysts for Fuel Cells 被引量:1
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作者 Fa-Dong Chen Zhuo-Yang Xie +5 位作者 Meng-Ting Li Si-Guo Chen Wei Ding Li Li Jing Li Zi-Dong Wei 《电化学(中英文)》 CAS 北大核心 2024年第7期1-27,共27页
Two major challenges,high cost and short lifespan,have been hindering the commercialization process of lowtemperature fuel cells.Professor Wei's group has been focusing on decreasing cathode Pt loadings without lo... Two major challenges,high cost and short lifespan,have been hindering the commercialization process of lowtemperature fuel cells.Professor Wei's group has been focusing on decreasing cathode Pt loadings without losses of activity and durability,and their research advances in this area over the past three decades are briefly reviewed herein.Regarding the Pt-based catalysts and the low Pt usage,they have firstly tried to clarify the degradation mechanism of Pt/C catalysts,and then demonstrated that the activity and stability could be improved by three strategies:regulating the nanostructures of the active sites,enhancing the effects of support materials,and optimizing structures of the three-phase boundary.For Pt-free catalysts,especialiy carbon-based ones,several strategies that they proposed to enhance the activity of nitrogen-/heteroatom-doped carbon catalysts are firstly presented.Then,an indepth understanding of the degradation mechanism for carbon-based catalysts is discussed,and followed by the corresponding stability enhancement strategies.Also,the carbon-based electrode at the micrometer-scale,faces the challenges such as low active-site density,thick catalytic layer,and the effect of hydrogen peroxide,which require rational structure design for the integral cathodic electrode.This review finally gives a brief conclusion and outlook about the low cost and long lifespan of cathodic oxygen reduction catalysts. 展开更多
关键词 Fuel cell Oxygen reduction reaction Pt-based catalyst Carbon-based catalyst
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