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Preparation and catalytic activity of CO-resistant catalyst core-shell Au@Pt/C for methanol oxidation
被引量:
5
1
作者
feng rongjuan li min liu jiaxiang
《Rare Metals》
SCIE
EI
CAS
CSCD
2012年第5期451-456,共6页
Au@Pt core-shell nanoparticles were successfully synthesized by a successive reduction method and then assembled on Vulcan XC-72 carbon surface. Furthermore, its composition, morphology, structure, and activity toward...
Au@Pt core-shell nanoparticles were successfully synthesized by a successive reduction method and then assembled on Vulcan XC-72 carbon surface. Furthermore, its composition, morphology, structure, and activity towards methanol oxidation were characterized by UV-vis spectrometry, transmission electron microscopy (TEM), high-resolution TEM (HRTEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and cyclic voltammetry (CV). Results reveal that Au@Pt/C catalyst has better activity towards methanol oxidation than the pure platinum prepared under the same conditions. When the atomic ratio of Au to Pt in the prepared Au@Pt/C catalyst is 1:2, this catalyst exhibits best electrocatalytic activity towards methanol oxidation in acidic media, and the peak current density on this catalyst is ~2.0 times higher than that on Pt/C catalyst. The better catalytic activity of Au@Pt/C results from its better resistance to toxic CO than Pt/C because the CO oxidation on Au@Pt/C is 60 mV more negative than the case on Pt/C. © The Nonferrous Metals Society of China and Springer-Verlag Berlin Heidelberg 2012.
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关键词
Carbon
Cobalt
Cyclic
voltammetry
ELECTROCATALYSTS
Gold
METHANOL
Nanoparticles
Oxidation
PHOTOELECTRONS
Platinum
Platinum
alloys
Synthesis
(chemical)
Transmission
electron
microscopy
X
ray
diffraction
X
ray
photoelectron
spectroscopy
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题名
Preparation and catalytic activity of CO-resistant catalyst core-shell Au@Pt/C for methanol oxidation
被引量:
5
1
作者
feng rongjuan li min liu jiaxiang
机构
College of Materials Science and Engineering
出处
《Rare Metals》
SCIE
EI
CAS
CSCD
2012年第5期451-456,共6页
基金
supported financially by the National Natural Science Foundation of China (No.51074012)
文摘
Au@Pt core-shell nanoparticles were successfully synthesized by a successive reduction method and then assembled on Vulcan XC-72 carbon surface. Furthermore, its composition, morphology, structure, and activity towards methanol oxidation were characterized by UV-vis spectrometry, transmission electron microscopy (TEM), high-resolution TEM (HRTEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and cyclic voltammetry (CV). Results reveal that Au@Pt/C catalyst has better activity towards methanol oxidation than the pure platinum prepared under the same conditions. When the atomic ratio of Au to Pt in the prepared Au@Pt/C catalyst is 1:2, this catalyst exhibits best electrocatalytic activity towards methanol oxidation in acidic media, and the peak current density on this catalyst is ~2.0 times higher than that on Pt/C catalyst. The better catalytic activity of Au@Pt/C results from its better resistance to toxic CO than Pt/C because the CO oxidation on Au@Pt/C is 60 mV more negative than the case on Pt/C. © The Nonferrous Metals Society of China and Springer-Verlag Berlin Heidelberg 2012.
关键词
Carbon
Cobalt
Cyclic
voltammetry
ELECTROCATALYSTS
Gold
METHANOL
Nanoparticles
Oxidation
PHOTOELECTRONS
Platinum
Platinum
alloys
Synthesis
(chemical)
Transmission
electron
microscopy
X
ray
diffraction
X
ray
photoelectron
spectroscopy
Keywords
Carbon
Cobalt
Cyclic voltammetry
Electrocatalysts
Gold
Methanol
Nanoparticles
Oxidation
Photoelectrons
Platinum
Platinum alloys
Synthesis (chemical)
Transmission electron microscopy
X ray diffraction
X ray photoelectron spectroscopy
分类号
O643.3 [理学—物理化学]
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Preparation and catalytic activity of CO-resistant catalyst core-shell Au@Pt/C for methanol oxidation
feng rongjuan li min liu jiaxiang
《Rare Metals》
SCIE
EI
CAS
CSCD
2012
5
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