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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Control of average particle size of carbon aerogel supported platinum nanoparticles by supercritical deposition
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Control of average particle size of carbon aerogel supported platinum nanoparticles by supercritical deposition

机译:通过超临界沉积控制碳气凝胶的平均粒度粒径

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Supercritical deposition was used to synthesize Pt/carbon aerogel (Pt/CA) electrocatalysts. CAs with average pore diameters of 6, 8 and 19 nm (CA6, CA8 and CA19, respectively) were synthesized and impregnated with Pt(cod)me(2) precursor using supercritical carbon dioxide followed by the thermal conversion of the Pt precursor into its metallic form under N-2 atmosphere at various temperatures between 200 and 1000 degrees C. All of the prepared CAs have high surface areas with very sharp pore size distributions. XRD and TEM results show increased Pt particle size with increasing conversion temperature with a homogenous distribution of nanoparticles on the CA supports. Cyclic voltammetry was used to determine the effect of CA pore properties on electrocatalytic activity. At a conversion temperature of 400 degrees C, the highest and lowest electrochemical surface area values were obtained for Pt/CA19 and Pt/CA6 of (126 and 36 m(2)/g, respectively). Furthermore, Pt/CA19 showed good mass activity whereas Pt/CA6 and Pt/CA8 had lower activity values towards the Oxygen Reduction Reaction (ORR). The mass activity values for Pt/CA19 increased with increasing conversion temperature, except for the sample converted at 1000 degrees C which exhibited the lowest mass activity. The specific activity increased significantly with the conversion temperature up to 600 degrees C which gave a value six times that obtained at 200 degrees C. At 800 degrees C, the specific activity decreased slightly, probably due to a change in the CA structure at this elevated conversion temperature. The Pt/CA19 sample converted at 600 degrees C exhibited the best performance with a mass activity of 0.1 A/mg(pt) and a specific activity of 0.24 mA/cm(2). (C) 2017 Elsevier Inc. All rights reserved.
机译:超临界沉积用于合成Pt /碳气凝胶(Pt / Ca)电催化剂。平均孔径为6,8和19nm(Ca6,Ca8和Ca19)的CAS被合成并浸渍使用超临界二氧化碳的Pt(COD)Me(2)前体,然后将Pt前体热转化为其在N-2气氛下的金属形式在200至1000℃之间的各种温度下。所有制备的CA都具有高表面积,具有非常尖锐的孔径分布。 XRD和TEM结果表明,随着纳米颗粒的均质分布增加,CT粒径增加了Pt粒径。循环伏安法用于确定Ca孔景性对电催化活性的影响。在400℃的转换温度下,获得最高和最低电化学表面积值(分别为(126和36m(2)/ g)的pt / ca19和pt / ca6。此外,Pt / Ca19显示出良好的质量活性,而Pt / ca6和pt / ca8对氧还原反应的活性值较低(ORR)。除转化温度增加,Pt / Ca19的质量活性值增加,除了在1000℃下转化的样品,表现出最低质量活性。对比率显着增加的转化温度高达600℃,其在800℃下得到的值六次,在800℃下获得,比活度略微下降,可能是由于该升高的CA结构的变化转换温度。在600℃下转化的Pt / Ca19样品表现出最佳性能,其质量活性为0.1a / mg(pt),比0.24mA / cm(2)的特定活性。 (c)2017年Elsevier Inc.保留所有权利。

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