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Octahedral palladium nanoparticles as excellent hosts for electrochemically adsorbed and absorbed hydrogen

机译:八面体钯纳米粒子是电化学吸附和吸收氢的优良基质

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摘要

We report new results for electrochemical H adsorption on and absorption in octahedral palladium nanoparticles (Pd-NPs) with an average tip-to-tip size of 7.8 nm and a narrow size distribution. They reveal a very high H loading of 0.90 that cannot be achieved using bulk Pd materials or larger NPs; this behavior is assigned to a combination of two factors: their small size and face morphology. Temperature-dependent cyclic voltammetry (CV) studies in the range of 296 to 333 K reveal unique features that are attributed to electrochemical H adsorption, H absorption, and H2 generation. The CV features are used to prepare H adsorption and absorption isotherms that are then used in thermodynamic data analysis. Modeling of the experimental results demonstrates that, upon H adsorption and absorption, Pd-NPs develop a core-shell-skin structure, each with its unique H loading. The electrochemical results obtained for octahedral Pd-NPs are compared to analogous data obtained for cubic Pd-NPs with a similar size as well as for larger cubic Pd-NPs and bulk materials under gas-phase conditions.
机译:我们报告了八面体钯纳米颗粒(Pd-NPs)上电化学H的吸附和吸收的新结果,其平均尖端间尺寸为7.8 nm,尺寸分布较窄。它们显示出0.90的非常高的H负载,而使用块状Pd材料或更大的NP则无法实现。将此行为归因于两个因素的组合:它们的小尺寸和面部形态。温度依赖性循环伏安法(CV)在296至333 K范围内的研究揭示了归因于电化学H吸附,H吸收和H2生成的独特特征。 CV功能部件用于准备H吸附和吸收等温线,然后将其用于热力学数据分析。实验结果的模型表明,在H吸附和吸收后,Pd-NPs形成核-壳-皮结构,每个结构都有其独特的H负载。将八面体Pd-NP的电化学结果与类似尺寸的立方Pd-NP以及较大的立方Pd-NP和散装材料在气相条件下获得的类似数据进行比较。

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