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首页> 外文期刊>Chemistry: A European journal >Facile Synthesis of Ultrathin Bimetallic PtSn Wavy Nanowires by Nanoparticle Attachment as Enhanced Hydrogenation Catalysts
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Facile Synthesis of Ultrathin Bimetallic PtSn Wavy Nanowires by Nanoparticle Attachment as Enhanced Hydrogenation Catalysts

机译:纳米粒子作为增强加氢催化剂轻松合成超薄双金属PtSn波浪纳米线

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摘要

Ultrathin wavy nanowires represent an emerging class of nanostructures that exhibit unique catalytic, magnetic, and electronic properties, but the controlled production of bimetallic wavy nanowires remains a significant challenge. Ultrathin bimetallic PtSn nanowires have been prepared with high yield and featuring a highly wavy structure. Owing to the ultrathin nature and unique electronic properties of these PtSn wavy nanowires, they exhibit improved catalytic performance for the hydrogenation of nitrobenzene, as well as for the hydrogenation of styrene. These results suggest a new strategy to prepare highly active catalysts through defect engineering and can significantly impact broad practical applications.
机译:超薄波浪形纳米线代表了新兴的一类纳米结构,具有独特的催化,磁性和电子性能,但是双金属波浪形纳米线的受控生产仍然是一个巨大的挑战。超薄双金属PtSn纳米线已经以高产量制备并且具有高度波浪状的结构。由于这些PtSn波浪纳米线的超薄性质和独特的电子性能,它们在硝基苯的氢化以及苯乙烯的氢化方面显示出改进的催化性能。这些结果表明通过缺陷工程制备高活性催化剂的新策略,并且可以显着影响广泛的实际应用。

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