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首页> 外文期刊>Scientific reports. >A Strategy for Fabricating Porous PdNi@Pt Core-shell Nanostructures and Their Enhanced Activity and Durability for the Methanol Electrooxidation
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A Strategy for Fabricating Porous PdNi@Pt Core-shell Nanostructures and Their Enhanced Activity and Durability for the Methanol Electrooxidation

机译:用于制造多孔PDNI @Pt核壳纳米结构的策略及其增强的甲醇电氧化活性和耐久性

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Three-dimensionally (3D) porous morphology of nanostructures can effectively improve their electrocatalytic activity and durability for various electrochemical reactions owing to big surface area and interconnected structure. Cyanogel, a jelly-like inorganic polymer, can be used to synthesize various three-dimensionally (3D) porous alloy nanomaterials owing to its double-metal property and particular 3D backbone. Here, 3D porous PdNi@Pt core-shell nanostructures (CSNSs) are facilely synthesized by first preparing the Pd-Ni alloy networks (Pd-Ni ANWs) core via cyanogel-reduction method followed by a galvanic displacement reaction to generate the Pt-rich shell. The as-synthesized PdNi@Pt CSNSs exhibit a much improved catalytic activity and durability for the methanol oxidation reaction (MOR) in the acidic media compared to the commercial used Pt black because of their specific structural characteristics. The facile and mild method described herein is highly attractive for the synthisis of 3D porous core-shell nanostructures.
机译:三维(3D)纳米结构的多孔形态可以有效地改善它们的电催化活性和由于大表面积和相互连接的结构而有针对各种电化学反应的耐久性。 Cyanogel,一种类似果冻的无机聚合物,可用于以其双金属性能和特定的3D骨架合成各种三维(3D)多孔合金纳米材料。这里,3D多孔PDNI @Pt核 - 壳纳米结构(CSNSS)通过首先通过Cyanogel还原方法制备PD-Ni合金网络(PD-Ni Anws)芯,然后是电常压反应来产生富有的PT-Rich壳。与商业用过的Pt黑色相比,AS合成的PDNI @ Pt CSSS对酸性介质中的甲醇氧化反应(MOR)具有大大改善的催化活性和耐久性,因为它们的特定结构特征是商业使用的PT黑色。本文所述的容易和温和的方法对于3D多孔核 - 壳纳米结构的合成具有高度吸引力。

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