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Core-shell Au@Pd nanoparticles with enhanced catalytic activity for oxygen reduction reaction via core-shell Au@Ag/Pd constructions

机译:通过核壳Au @ Ag / Pd结构增强了对氧还原反应的催化活性的核壳Au @ Pd纳米颗粒

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Core-shell nanoparticles often exhibit improved catalytic properties due to the lattice strain created in these core-shell particles. Herein, we demonstrate the synthesis of core-shell Au@Pd nanoparticles from their core-shell Au@Ag/Pd parents. This strategy begins with the preparation of core-shell Au@Ag nanoparticles in an organic solvent. Then, the pure Ag shells are converted into the shells made of Ag/Pd alloy by galvanic replacement reaction between the Ag shells and Pd2+ precursors. Subsequently, the Ag component is removed from the alloy shell using saturated NaCl solution to form core-shell Au@Pd nanoparticles with an Au core and a Pd shell. In comparison with the core-shell Au@Pd nanoparticles upon directly depositing Pd shell on the Au seeds and commercial Pd/C catalysts, the core-shell Au@Pd nanoparticles via their core-shell Au@Ag/Pd templates display superior activity and durability in catalyzing oxygen reduction reaction, mainly due to the larger lattice tensile effect in Pd shell induced by the Au core and Ag removal.
机译:由于在这些核-壳颗粒中产生的晶格应变,核-壳纳米颗粒通常表现出改善的催化性能。在这里,我们演示了由核壳Au @ Ag / Pd母体合成核壳Au @ Pd纳米颗粒。该策略始于在有机溶剂中制备核壳型Au @ Ag纳米颗粒。然后,通过Ag壳与Pd 2 + 前体之间的电流置换反应,将纯的Ag壳转化为由Ag / Pd合金制成的壳。随后,使用饱和NaCl溶液从合金壳中去除Ag组分,以形成具有Au核和Pd壳的核-壳Au @ Pd纳米颗粒。与直接将Pd壳沉积在Au种子和商用Pd / C催化剂上的核壳Au @ Pd纳米颗粒相比,核壳Au @ Pd纳米颗粒通过其核壳Au @ Ag / Pd模板显示出优异的活性和催化氧还原反应的持久性,主要是由于Au核和Ag的去除在Pd壳中产生更大的晶格拉伸效应。

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