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Flexible synthesis of Au@Pd core-shell mesoporous nanoflowers for efficient methanol oxidation

机译:灵活的Au@Pd合成核壳介孔nanoflowers高效甲醇氧化

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摘要

The design of bimetallic core-shell nanostructures with mesoporous surfaces is considered significant to strengthen the catalytic activity and stability for direct methanol fuel cells. Here, we report a flexible method to synthesize Au@Pd core-shell mesoporous nanoflowers (Au@mPd NFs) with Au core coated with mesoporous Pd nano-petals, in which polymeric micelle-assembled structures are used as templates to induce the formation of mesopores. Benefiting from the electronic and structural effects, Au@mPd NFs show excellent electrocatalytic activity and stability for methanol oxidation reaction in alkaline electrolytes. This study demonstrates a versatile strategy for the fabrication of core-shell mesoporous nanoflowers with adjustable composition.
机译:双金属核壳纳米结构的设计与介孔表面被认为是催化活性显著加强与稳定直接甲醇燃料电池。在这里,我们报告一个灵活的方法来合成Au@Pd核壳介孔nanoflowers (Au@mPdNFs)与非盟的核心涂以介孔Pd聚合物micelle-assembled nano-petals,结构作为模板诱导中孔的形成。电子和结构影响,Au@mPd NFs展示优秀的electrocatalytic活动和甲醇氧化反应的稳定碱性电解质。多才多艺的制造策略可调,具有核壳结构的介孔nanoflowers组成。

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