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核壳型Co-Pt纳米粒子的氧还原电催化性能 被引量:4
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作者 梅艳 刘世斌 +2 位作者 段东红 张忠林 郝晓刚 《太原理工大学学报》 CAS 北大核心 2010年第2期117-122,共6页
采用两步化学还原法制备不同壳层厚度的核壳型Co-Pt纳米粒子。采用X射线衍射光谱(XRD)、X射线光电子能谱(XPS)及透射电镜(TEM)技术表征催化剂的结构和组成,用旋转圆盘电极动电位扫描法测试其对氧还原反应的催化性能。结果表明:核壳型Co... 采用两步化学还原法制备不同壳层厚度的核壳型Co-Pt纳米粒子。采用X射线衍射光谱(XRD)、X射线光电子能谱(XPS)及透射电镜(TEM)技术表征催化剂的结构和组成,用旋转圆盘电极动电位扫描法测试其对氧还原反应的催化性能。结果表明:核壳型Co-Pt纳米粒子直径约30 nm;相对于Pt/C,Co-Pt/C具有更高的电催化氧还原活性和抗甲醇性,催化剂随着Pt壳层厚度的增加氧还原活性增大,抗甲醇能力逐渐降低。随着甲醇浓度的增加,氧还原起始过电位增大,峰电流密度减小。 展开更多
关键词 核壳型co-pt 氧还原 电催化 抗甲醇性
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Nanoscale architecture of ceria-based model catalysts: Pt-Co nanostructures on well-ordered CeO_(2)(111) thin films 被引量:2
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作者 Yaroslava Lykhach TomásSkála +5 位作者 Armin Neitzel Nataliya Tsud Klára Beranová Kevin CPrince Vladimír Matolín Jorg Libuda 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第6期985-997,共13页
We have prepared and characterized atomically well-defined model systems for ceria-supported Pt-Co core-shell catalysts. Pt@Co and Co@Pt core-shell nanostructures were grown on well-ordered CeO2(111) films on Cu(111) ... We have prepared and characterized atomically well-defined model systems for ceria-supported Pt-Co core-shell catalysts. Pt@Co and Co@Pt core-shell nanostructures were grown on well-ordered CeO2(111) films on Cu(111) by physical vapour deposition of Pt and Co metals in ultrahigh vacuum and investigated by means of synchrotron radiation photoelectron spectroscopy and resonant photoemission spectroscopy. The deposition of Co onto CeO2(111) yields CoCeO2(111) solid solution at low Co coverage(0.5 ML), followed by the growth of metallic Co nanoparticles at higher Co coverages. Both Pt@Co and Co@Pt model structures are stable against sintering in the temperature range between 300 and 500 K. After annealing at 500 K, the Pt@Co nanostructure contains nearly pure Co-shell while the Pt-shell in the Co@Pt is partially covered by metallic Co. Above 550 K, the re-ordering in the near surface regions yields a subsurface Pt-Co alloy and Pt-rich shells in both Pt@Co and Co@Pt nanostructures. In the case of Co@Pt nanoparticles, the chemical ordering in the near surface region depends on the initial thickness of the deposited Pt-shell. Annealing of the Co@Pt nanostructures in the presence of O2 triggers the decomposition of Pt-Co alloy along with the oxidation of Co, regardless of the thickness of the initial Pt-shell. Progressive oxidation of Co coupled with adsorbate-induced Co segregation leads to the formation of thick CoO layers on the surfaces of the supported Co@Pt nanostructures. This process is accompanied by the disintegration of the CeO2(111) film and encapsulation of oxidized Co@Pt nanostructures by CeO2 upon annealing in O2 above 550 K. Notably, during oxidation and reduction cycles with O2 and H2 at different temperatures, the changes in the structure and chemical composition of supported Co@Pt nanostructures were driven mainly by oxidation while reduction treatments had little effect regardless of the initial thickness of the Pt-shell. 展开更多
关键词 Core-shell nanoparticles Model catalyst Pt-Co Cerium oxide Chemical ordering Synchrotron radiation photoelectron spectroscopy
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