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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Microemulsion-Controlled Synthesis of One-Dimensional Ir Nanowires and Their Catalytic Activity in Selective Hydrogenation of o-Chloronitrobenzene
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Microemulsion-Controlled Synthesis of One-Dimensional Ir Nanowires and Their Catalytic Activity in Selective Hydrogenation of o-Chloronitrobenzene

机译:一维Ir纳米线的微乳液控制合成及其在邻氯硝基苯选择性加氢中的催化活性

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摘要

Ultrathin iridium nanowires have been synthesized using a convenient method mediated by microemulsion via oriented attachment growth for the first time. The interconnected polycrystalline Ir nanowires possess high aspect ratio, small average diameter of 2 nm, and length up to several hundred nanometers. The 1D growth of surfactant-encapsulated primary nanoparticles, which is determined by the inherent crystal growth habit and the specific interactions of nanocrystals with surfactant molecules, accounts for the formation of Ir nanowires. The as-prepared Ir nanowires show high activity and selectivity toward the hydrogenation production of industrially valuable chloroaniline from o-chloronitrobenzene. Theoretical evidence based on DFT calculation indicates that H2 could be dissociated more easily and quickly on Ir(100) surface than on Ir(111), accounting for the higher hydrogenation rate over Ir nanowires exposing both (200) and (111) crystal facets rather than only (111) facet for Ir nanoparticles.
机译:超薄铱纳米线已首次使用由微乳液介导的定向附着生长介导的便捷方法合成。互连的多晶Ir纳米线具有高的长宽比,2 nm的小平均直径和长达几百纳米的长度。表面活性剂包封的初级纳米颗粒的一维生长取决于固有的晶体生长习性以及纳米晶体与表面活性剂分子的特定相互作用,这说明了Ir纳米线的形成。所制备的Ir纳米线对由邻氯硝基苯加氢生产工业上有价值的氯苯胺显示出高活性和选择性。基于DFT计算的理论证据表明,与Ir(111)相比,Hr在Ir(100)表面上的分解更容易,更迅速,这是因为Ir纳米线的氢化速率更高,从而暴露了(200)和(111)晶面仅比Ir纳米粒子的(111)刻面小。

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