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首页> 外文期刊>ACS catalysis >Kinetically Stabilized Pd@Pt Core-Shell Octahedral Nanoparticles with Thin Pt Layers for Enhanced Catalytic Hydrogenation Performance
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Kinetically Stabilized Pd@Pt Core-Shell Octahedral Nanoparticles with Thin Pt Layers for Enhanced Catalytic Hydrogenation Performance

机译:稳定的具有薄Pt层的Pd @ Pt核壳八面体纳米颗粒,用于增强催化加氢性能

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This study investigates the structural stability of small Pd@Pt core@shell octahedral nanoparticles (NPs) and their shell thickness dependent catalytic performance for p-chloronitrobenzene hydrogenation with H-2. The 6-8 nm Pd@Pt octahedral NPs are prepared by a sequential reduction method, and the characterization results confirm that Pd@Pt octahedral NPs with one to four atomic Pt layers can be controllably synthesized. The Pd@Pt octahedral NPs with one atomic Pt layer demonstrate excellent structural stability with the maintenance of core shell structures as well as high catalytic stability during cycle to cycle catalytic p-chloronitrobenzene hydrogenation reactions. The alumina-supported Pd@Pt octahedral NPs illustrate a superior catalytic performance relative to individual Pt and Pd and their physical mixtures. Theoretical calculations by density functional theory suggest that the unexpected structural stability for Pd@Pt octahedral NPs with thin Pt shells and their corresponding catalytic stability during hydrogenation reactions can be ascribed to the strong binding between Pt surfaces and reactants/products in catalytic reactions. The enhanced catalytic performance of Pd@Pt octahedral NPs possibly originates from the core-shell interaction, which adjusts the electronic state of surface Pt atoms to be suitable for selective p-chloronitrobenzene hydrogenation.
机译:这项研究调查了小Pd @ Pt核@壳八面体纳米粒子(NPs)的结构稳定性及其壳厚度对H-2对氯硝基苯加氢的催化性能。通过顺序还原法制备了6-8 nm的Pd @ Pt八面体NPs,表征结果证实了具有1-4个原子Pt层的Pd @ Pt八面体NPs是可控合成的。具有一个原子Pt层的Pd @ Pt八面体NPs表现出优异的结构稳定性,并保持核壳结构,并且在循环催化对氯硝基苯加氢反应的循环过程中具有很高的催化稳定性。氧化铝负载的Pd @ Pt八面体NPs相对于单个Pt和Pd及其物理混合物而言,具有优越的催化性能。密度泛函理论的理论计算表明,具有薄Pt壳的Pd @ Pt八面体NP出乎意料的结构稳定性及其在氢化反应过程中的相应催化稳定性可以归因于Pt表面与催化反应中反应物/产物之间的牢固结合。 Pd @ Pt八面体NPs增强的催化性能可能源自核-壳相互作用,该相互作用调节了表面Pt原子的电子状态,使其适合于选择性对氯硝基苯加氢。

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