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首页> 外文期刊>Nano letters >A Generic Wet Impregnation Method for Preparing Substrate-Supported Platinum Group Metal and Alloy Nanoparticles with Controlled Particle Morphology
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A Generic Wet Impregnation Method for Preparing Substrate-Supported Platinum Group Metal and Alloy Nanoparticles with Controlled Particle Morphology

机译:一种通用的湿法浸渍法制备具有可控颗粒形态的基体负载铂族金属和合金纳米颗粒

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摘要

Mass production of shape-controlled platinum group metal (PGM) and alloy nanoparticles is of high importance for their many fascinating properties in catalysis, electronics, and photonics. Despite of successful demonstrations at milligram scale using wet chemistry syntheses in many fundamental studies, there is still a big gap between the current methods and their real applications due to the complex synthetic procedures, scale-up difficulty, and surface contamination problem of the made particles. Here we report a generic wet impregnation method for facile, surfactant-free, and scalable preparation of nanoparticles of PGMs and their alloys on different substrate materials with controlled particle morphology and clean surface, which bridges the outstanding properties of these nanoparticles to practical important applications. The underlying particle growth and shape formation mechanisms were investigated using a combination of ex situ and in situ characterizations and were attributed to their different interactions with the applied gas molecules.
机译:形状控制的铂族金属(PGM)和合金纳米颗粒的大量生产对于催化,电子学和光子学中的许多引人入胜的特性非常重要。尽管在许多基础研究中已成功使用湿化学合成技术在毫克级上进行了成功的演示,但由于复杂的合成程序,放大困难和所制颗粒的表面污染问题,目前的方法与其实际应用之间仍然存在很大差距。在这里,我们报告了一种通用的湿法浸渍方法,该方法可在具有受控颗粒形态和清洁表面的不同基材上,方便,无表面活性剂且可扩展地制备PGM及其合金的纳米颗粒,从而将这些纳米颗粒的出色性能与重要的实际应用联系起来。使用异位和原位表征的组合研究了潜在的颗粒生长和形状形成机制,并归因于它们与所施加气体分子的不同相互作用。

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