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一步法通过微波等离子体喷雾热解从溶解在乙醇中的 Pt 酸合成 Pt/石墨烯复合材料。

One-Step Synthesis of Pt/Graphene Composites from Pt Acid Dissolved Ethanol via Microwave Plasma Spray Pyrolysis.

机构信息

Rare Metals Research Division, Korea Institute of Geoscience &Mineral Resources, Deajeon, 34132, Korea.

Department of Nanomaterials Science and Engineering, University of Science &Technology, Deajeon, 34113, Korea.

出版信息

Sci Rep. 2016 Sep 13;6:33236. doi: 10.1038/srep33236.

Abstract

Pt nanoparticles-laden graphene (Pt/GR) composites were synthesized in the gas phase from a mixture of ethanol and Pt precursor by microwave plasma spray pyrolysis. The morphology of Pt/GR composites has the shape of wrinkled sheets of paper, while Pt nanoparticles (Pt NPs) that are less than 2.6 nm in the mean diameter are uniformly well deposited on the surface of GR sheets stacked in only three layers. The Pt/GR composite prepared with 20 wt% of Pt had the highest specific surface area and electrochemical surface area of up to 402 m(2) g(-1) and 77 m(2) g(-1) (Pt), respectively. In addition, the composite showed superior electrocatalytic activity compared with commercial Pt-carbon black. The excellent electrocatalytic activity was attributed to the high specific surface area and electrochemical surface area of the Pt/GR composite directly produced by microwave plasma spray pyrolysis. Thus, it is clearly expected that the Pt/GR composite is a promising material for DMFC catalysts.

摘要

Pt 纳米粒子负载的石墨烯(Pt/GR)复合材料是通过微波等离子体喷雾热解由乙醇和 Pt 前体制备的混合物在气相中合成的。Pt/GR 复合材料的形态呈皱纸状,而平均直径小于 2.6nm 的 Pt 纳米粒子(PtNPs)均匀地沉积在仅三层堆叠的 GR 片表面上。Pt/GR 复合材料中含有 20wt%的 Pt 时具有最高的比表面积和电化学表面积,分别高达 402m²/g 和 77m²/g(Pt)。此外,与商业 Pt-碳黑相比,该复合材料表现出优异的电催化活性。优异的电催化活性归因于微波等离子体喷雾热解直接制备的 Pt/GR 复合材料的高比表面积和电化学表面积。因此,可以清楚地预期,Pt/GR 复合材料是 DMFC 催化剂的一种有前途的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f35d/5020682/aa3c77eff65a/srep33236-f1.jpg

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