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Water oxidation electrocatalysis with iron oxide nanoparticles prepared via laser ablation 被引量:2
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作者 Erica Pizzolato Stefano Scaramuzza +5 位作者 Francesco Carraro Alessia Sartori Stefano Agnoli Vincenzo Amendola Marcella Bonchio Andrea Sartorel 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2016年第2期244-248,共5页
Iron oxide nanoparticles(FeOx NPs, 5–30 nm size) prepared via laser ablation in liquid were supported onto Indium Tin Oxide conductive glass slides by magnetophoretic deposition(MD) technique. The resulting Fe O ... Iron oxide nanoparticles(FeOx NPs, 5–30 nm size) prepared via laser ablation in liquid were supported onto Indium Tin Oxide conductive glass slides by magnetophoretic deposition(MD) technique. The resulting Fe O x@ITO electrodes are characterized by a low amount of iron coverage of 16–50 nmol/cm^2,and show electrocatalytic activity towards water oxidation in neutral phosphate buffer pH 7 with 0.58 V overpotential and quantitative Faradaic efficiency towards oxygen production. XPS analysis on the oxygen region of the FeOx films reveals a substantial hydration of the surface after catalysis, recognized as a crucial step to access reactivity. 展开更多
关键词 Water oxidation electrocatalysis Iron oxide Laser ablation Nanoparticles
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An acetic acid refluxing-electrochemistry combined strategy to activate supported-platinum electrocatalysts
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作者 Yan Feng Jinding Pan +1 位作者 Hui Liu Jun Yang 《Particuology》 SCIE EI CAS CSCD 2017年第1期111-117,共7页
Surfactant removal from the surface of platinum-based nanoparticles prepared using solution-based methods is a prerequisite to realize their high catalytic performance for electrochemical reactions. Herein, we report ... Surfactant removal from the surface of platinum-based nanoparticles prepared using solution-based methods is a prerequisite to realize their high catalytic performance for electrochemical reactions. Herein, we report an effective approach combining acetic acid refluxing with an electrochemical process for the removal of amine- or thiol-based capping agents from the surface of supported-platinum nanoparticles. This strategy involves surfactant protonation by refluxing the supported-platinum particles in acetic acid followed by surfactant removal by subsequent electrochemical treatment at high potential. We demon- strate that this combined activation process is essential to enhance platinum particle performance in catalyzing direct methanol fuel cell reactions, including methanol oxidation and oxygen reduction reac- tions. The studies in this work show promise in electrocatalysis applications of solution-based materials synthesis. 展开更多
关键词 Platinum Nanoparticle Methanol oxidation reaction Oxygen reduction reaction electrocatalysis
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