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Reduced graphene oxide supported platinum nanocubes composites: one-pot hydrothermal synthesis and enhanced catalytic activity

机译:还原氧化石墨烯负载的铂纳米立方复合材料:一锅水热合成和增强的催化活性

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摘要

Reduced graphene oxide (rGO) supported platinum nanocubes (Pt-NCs) composites (Pt-NCs/rGO) were synthesized successfully by a water-based co-chemical reduction method, in which polyallylamine hydrochloride acted as a multi-functional molecule for the functionalization of graphene oxide, anchorage of PtII precursor, and control of Pt crystal facets. The morphology, structure, composition, and catalytic property of Pt-NCs/rGO composites were characterized in detail by various spectroscopic techniques. Transmission electron microscopy images showed well-defined Pt-NCs with an average size of 9 nm uniformly distributed on the rGO surface. The as-prepared Pt-NCs/rGO composites had excellent colloidal stability in the aqueous solution, and exhibited superior catalytic activity towards the hydrogenation reduction of nitro groups compared to commercial Pt black. The improved catalytic activity originated from the abundant exposed Pt{100} facets of Pt-NCs, excellent dispersion of Pt-NCs on the rGO surface, and synergistic effect between Pt-NCs and rGO.
机译:采用水基共化学还原法成功合成了还原氧化石墨烯(rGO)负载的铂纳米立方体(Pt-NCs/rGO),其中聚烯丙胺盐酸盐作为多功能分子,用于氧化石墨烯的功能化、PtII前体的锚定和Pt晶面的控制。采用多种光谱技术对Pt-NCs/rGO复合材料的形貌、结构、组成和催化性能进行了详细表征。透射电子显微镜图像显示,平均尺寸为9 nm的Pt-NCs均匀分布在rGO表面上。制备的Pt-NCs/rGO复合材料在水溶液中具有优异的胶体稳定性,对硝基加氢还原的催化活性优于商业铂黑。Pt-NCs丰富的Pt{100}面暴露,Pt-NCs在rGO表面的分散性优异,以及Pt-NCs与rGOs之间的协同作用,提高了催化活性。

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