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不同形貌铂纳米粒子的制备及其应用于选择性催化加氢的研究进展
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作者 荆倩 李鑫怡 +2 位作者 王瑞 赵阳 王欢 《化工新型材料》 CAS CSCD 北大核心 2022年第12期279-282,287,共5页
金属纳米粒子的尺寸及形貌对其催化性能有很大影响,因此,实现金属纳米粒子形貌的可控制备具有重要的学术研究意义和工业应用价值。铂纳米粒子由于具有优异的催化加氢活性,其不同形貌对于加氢产物选择性的调控已成为研究人员关注的重点... 金属纳米粒子的尺寸及形貌对其催化性能有很大影响,因此,实现金属纳米粒子形貌的可控制备具有重要的学术研究意义和工业应用价值。铂纳米粒子由于具有优异的催化加氢活性,其不同形貌对于加氢产物选择性的调控已成为研究人员关注的重点。总结了近年不同形貌铂纳米粒子的制备方法,及其在选择性催化加氢应用方面的研究进展。 展开更多
关键词 立方体 铂八面体 立方八面体 选择性催化加氢
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Pt supported on octahedral Fe_3O_4 microcrystals as a catalyst for removal of formaldehyde under ambient conditions 被引量:6
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作者 WeiyiCui DanXue +3 位作者 NaidiTan BinZheng MingjunJia WenxiangZhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第9期1534-1542,共9页
Several catalysts comprising Pt supported on octahedral Fe3O4(Pt/Fe3O4) were prepared by a facile method involving co-precipitation followed by thermal treatment at different temperatures. A variety of characterizat... Several catalysts comprising Pt supported on octahedral Fe3O4(Pt/Fe3O4) were prepared by a facile method involving co-precipitation followed by thermal treatment at different temperatures. A variety of characterization results revealed that this preparation process afforded highly crystalline octahedral Fe3O4 with a uniform distribution of Pt nanoparticles on its surface. The thermal-treatment temperature significantly influenced the redox properties of the Pt/Fe3O4 catalysts. All the Pt/Fe3O4 catalysts were found to be catalytically active and stable for the oxidation of low-concentration formaldehyde(HCHO) with oxygen. The catalyst prepared by thermal treatment at 80 °C(labelled Pt/Fe3O4-80) exhibited the highest catalytic activity, efficiently converting HCHO to CO2 and H2 O under ambient temperature and moisture conditions. The excellent performance of Pt/Fe3O4-80 was mainly attributed to beneficial interactions between the Pt and Fe species that result in the formation a higher density of active interface sites(e.g., Pt-O-FeO x and Pt-OH-FeO x). The introduction of water vapor improves the catalytic activity of the Pt/Fe3O4 catalysts as it participates in a water-assisted dissociation process. 展开更多
关键词 OCTAHEDRAL FE3O4 Ptnanoparticles Interfacial interaction Catalytic oxidation Formaldehyde
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