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首页> 外文期刊>Chemistry, an Asian journal >Periodically Arranged Arrays of Dendritic Pt Nanospheres Using Cage-Type Mesoporous Silica as a Hard Template
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Periodically Arranged Arrays of Dendritic Pt Nanospheres Using Cage-Type Mesoporous Silica as a Hard Template

机译:使用笼式中孔二氧化硅定期排列树突式Pt纳米球作为硬模板

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摘要

Dendritic Pt nanospheres of 20nm diameter are synthesized by using a highly concentrated surfactant assembly within the large-sized cage-type mesopores of mesoporous silica (LP-FDU-12). After diluting the surfactant solution with ethanol, the lower viscosity leads to an improved penetration inside the mesopores. After Pt deposition followed by template removal, the arrangement of the Pt nanospheres is a replication from that of the mesopores in the original LP-FDU-12 template. Although it is well known that ordered LLCs can form on flat substrates, the confined space inside the mesopores hinders surfactant self-organization. Therefore, the Pt nanospheres possess a dendritic porous structure over the entire area. The distortion observed in some nanospheres is attributed to the close proximity existing between neighboring cage-type mesopores. This new type of nanoporous metal with a hierarchical architecture holds potential to enhance substance diffusivity/accessibility for further improvement of catalytic activity.
机译:通过在介孔二氧化硅(LP-FDU-12)的大尺寸笼式中孔内的高浓度表面活性剂组件中,合成20nm直径的树突式Pt纳米球。用乙醇稀释表面活性剂溶液后,较低的粘度导致中孔内的改善渗透。在Pt沉积之后,用模板去除后,Pt纳米球的布置是从原始LP-FDU-12模板中的中孔的布置复制。虽然众所周知,有序的LLC可以在平底基板上形成,但是中孔内的受限空间阻碍了表面活性剂自组织。因此,Pt纳米球在整个区域上具有树突式多孔结构。在一些纳米球中观察到的失真归因于相邻笼式中孔之间存在的近距离。这种具有等级结构的新型纳米多孔金属具有增强物质扩散性/可访问性的潜力,以进一步提高催化活性。

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