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首页> 外文期刊>Nano: brief reports and reviews >One-Pot Synthesis of Platinum Nanodendrites with Enhanced Catalytic Performance for Methanol Oxidation Reaction
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One-Pot Synthesis of Platinum Nanodendrites with Enhanced Catalytic Performance for Methanol Oxidation Reaction

机译:一锅法合成具有增强催化性能的甲醇纳米氧化铂纳米枝晶

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摘要

Controlling the synthesis of noble metal nanostructures with highly branched morphology to obtain specific physical and chemical properties has attracted much attention. This paper reports the synthesis of 3D Pt nanodendrites with controlled architectures (multibranched) by a simple one-pot hydrothermal reaction in the presence of fructose. At high reaction temperature, fructose not only acts as a reducing agent, but also forms a hydrothermal carbon, which, as a capping agent, is absorbed on the surface of metal nanocrystals and induces the anisotropic growth of Pt nanodendrites. The prepared Pt nanodendrites are highly porous, and have self-supported nanoarchitectures with a high surface area and a number of absorption sites for reactant molecules. The Pt nanodendrites exhibit a higher electrocatalytic activity and stability than commercial Pt/C for methanol oxidation reaction.
机译:控制具有高度分支形态的贵金属纳米结构的合成以获得特定的物理和化学性质已经引起了广泛的关注。本文报道了在果糖存在下通过简单的一锅水热反应合成具有可控结构的3D Pt纳米枝晶(多支链)。在高反应温度下,果糖不仅充当还原剂,而且形成水热碳,作为封端剂,其被吸收在金属纳米晶体的表面上并引起Pt纳米树枝晶的各向异性生长。制备的Pt纳米树枝晶具有高度的多孔性,并具有自支撑的纳米结构,具有高的表面积和许多反应物分子的吸收位点。 Pt纳米树枝晶对甲醇氧化反应的电催化活性和稳定性高于商用Pt / C。

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