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Oxidation-induced phase separation of carbon-supported CuAu nanoparticles for electrochemical reduction of CO_(2) 被引量:1
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作者 yayun guan Yatian Liu +2 位作者 Qingye Ren Zejian Dong Langli Luo 《Nano Research》 SCIE EI CSCD 2023年第2期2119-2125,共7页
Alloy nanostructures have been extensively exploited in both thermal and electrochemical catalysis due to their beneficial“synergetic effects”and being cost-effective.Understandings of the alloy nanostructures inclu... Alloy nanostructures have been extensively exploited in both thermal and electrochemical catalysis due to their beneficial“synergetic effects”and being cost-effective.Understandings of the alloy nanostructures including phases,interfaces,and chemical composition are prerequisites for utilizing them as efficient electrocatalysts.Here,we use carbon-supported CuAu nanoparticles as a model catalyst to demonstrate the phase-separation induced variation of electrochemical performance for the CO_(2)reduction reaction.Driven by thermal oxidation,the CuOx phase gradually separates from the original CuAu nanoparticles,and different carbon supports,i.e.,graphene vs.carbon nanotube lead to a reversed trend in the selectivity towards CO production.Through detailed structural and chemical analysis,we find the extent of phase separation holds the key to this variation and could be used as an effective method to tune the electrochemical properties of the alloy phase. 展开更多
关键词 CuAu CO_(2)reduction reaction ELECTROCHEMICAL phase separation atomic scale
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