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Hollow ni-p amorphous alloy nanospheres: An efficient catalyst for sugars hydrogenation to polyols

机译:中空Ni-P非晶合金纳米:一种高效的糖氢化催化剂,用于多元醇

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In this paper, hollow Ni - P nanospheres (NSs) are prepared through Ni electroless plating on the Au-activated silica NSs externally covered by aminopropyl moieties, followed by removing the silica template with sodium hydroxide. With various characterizations, the resulting hollow Ni - P NSs are identified to be amorphous alloy. During liquid-phase hydrogenation of sugars to sugar alcohols, the hollow Ni - P amorphous alloy NSs delivered much superior catalytic performances to the commercial Raney Ni catalyst, showing a good potential in practical applications. Of particular interest is the unique hollow chamber structure of the hollow Ni - P amorphous alloy NSs, which allows for improving catalytic activity and durability relative to those associated with the dense Ni P amorphous alloy NSs. This work demonstrated that such hollow Ni materials with nanoporous chamber structure displayed advantages such as easy experimental handling and high accessibility for the reactants in liquid-phase reaction, more Ni active sites, as well as the existence of more electron-enriched inner surface, which is essential to provide highly efficient catalysts for some reactions.
机译:本文采用化学镀镍的方法,在表面覆盖有氨丙基基团的金活化二氧化硅纳米球(NSs)上制备了空心镍磷纳米球(NSs),然后用氢氧化钠去除二氧化硅模板。通过各种表征,确定得到的空心镍磷NSs为非晶态合金。在糖类液相加氢制糖醇过程中,空心镍磷非晶态合金NSs的催化性能远优于商业雷尼镍催化剂,具有良好的应用前景。特别令人感兴趣的是空心镍磷非晶态合金NSs独特的空心室结构,与致密镍磷非晶态合金NSs相关联的结构相比,该结构允许提高催化活性和耐久性。这项工作表明,这种具有纳米多孔室结构的空心镍材料具有以下优点:易于实验操作、液相反应中反应物的高可接近性、更多的镍活性中心,以及存在更多电子富集的内表面,这对于为某些反应提供高效催化剂至关重要。

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