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Electrocatalytic Properties of Hollow Coral-like Platinum Me so crystals

机译:空心珊瑚状铂金Meso晶体的电催化性能

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Controlling the morphology and size of Pt nanostructures can provide a great opportunity to improve their electrocatalytic properties and durability toward methanol oxidation. We successfully synthesized well-defined hollow coral-like Pt mesocrystals via a facile replacement reaction, using hierarchically structured Ag nanoparticles as the template. The as-synthesized coral-like Pt mesocrystals had hollow structures composed of porous walls that were 5—7 nm thick, which were constructed from numerous pores (~2 nm) and small (~5 nm) Pt nanoparticle building units. These hollow and porous structures exhibited large electrochemical surface areas. The Pt mesostructures that have single-crystal inherence as well as hollow and porous features possess improved performance with respect to electrocatalytic activity (2.72 mA/cm~2 at peak potential, which is 2.1 times greater than that of Pt black) and durability toward methanol oxidation.
机译:控制Pt纳米结构的形态和尺寸可以提供一个很大的机会来改善其电催化性能和对甲醇氧化的耐久性。我们使用分级结构的Ag纳米粒子作为模板,通过简便的置换反应成功合成了定义明确的空心珊瑚状Pt介晶。合成后的珊瑚状Pt介晶具有中空结构,该结构由5-7 nm厚的多孔壁组成,由许多孔(〜2 nm)和小的(〜5 nm)Pt纳米颗粒构建单元构成。这些中空和多孔结构表现出大的电化学表面积。具有单晶固有性以及中空和多孔特征的Pt介观结构在电催化活性(峰值电势为2.72 mA / cm〜2,是Pt黑的2.1倍)方面具有改进的性能氧化。

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