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首页> 外文期刊>Electrochemistry communications >Synthesis of mesoporous hollow carbon hemispheres as highly efficient Pd electrocatalyst support for ethanol oxidation
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Synthesis of mesoporous hollow carbon hemispheres as highly efficient Pd electrocatalyst support for ethanol oxidation

机译:介孔空心碳半球的合成,作为高效Pd电催化剂,用于乙醇氧化

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摘要

The synthesis procedure of the highly mesoporous hollow carbon hemispheres (HCHs) using glucose as carbon source and solid core mesoporous shell silica (SCMSS) as template and the formation mechanism of the HCHs have been presented. The HCHs show an ultrahigh surface area of 1095.59 m(2) g(-1) and an average mesopore size of 9.38 nm. The hemispherical structure with large mesopores also results in the improvement in the mass transfer and therefore more concentrated ethanol solution can be used to increase the energy density. The additional advantage of the HCHs compared to the hollow carbon spheres is that they can provide the similar surface area at reduced volume. The current densities of ethanol oxidation on Pd nanoparticles supported on HCH (Pd/HCH) electrocatalyst are three times as many as on Pd/C at the same Pd loadings.
机译:提出了以葡萄糖为碳源,以固态核心介孔壳二氧化硅(SCMSS)为模板的高介孔空心碳半球的合成方法和形成机理。六氯环己烷显示出1095.59 m(2)g(-1)的超高表面积和9.38 nm的平均中孔尺寸。具有大中孔的半球形结构也导致质量传递的改善,因此可以使用更浓的乙醇溶液来增加能量密度。与中空碳球相比,六氯环己烷的另一个优点是它们可以减少体积提供相似的表面积。在相同的Pd负载下,负载在HCH(Pd / HCH)电催化剂上的Pd纳米颗粒上乙醇氧化的电流密度是Pd / C上的三倍。

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