首页> 外文期刊>International Journal of Nanoparticles >Size-controlled preparation of ruthenium nanoparticles using polyaromatic amine-containing compounds as hydrogenation nanocatalyst precursors
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Size-controlled preparation of ruthenium nanoparticles using polyaromatic amine-containing compounds as hydrogenation nanocatalyst precursors

机译:使用含聚芳香胺的化合物作为加氢纳米催化剂前体,尺寸控制地制备钌纳米颗粒

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摘要

Ruthenium nanoparticles stabilised by polyaromatic amine-containing compounds (aminoethylcarbazole, aminoanthracene and aminoanthraquinone) were synthesised in solution using three different preparative methods, namely modified polyol reduction, borohydride reduction and phase-transfer method, respectively. Their product yields, particle sizes and size distributions were compared accordingly. The influence of stirring speed, amount of protecting agent, reduction temperature and ageing time were widely investigated. The phase transfer between polar and non-polar phases using these new polyaromatic stabilisers was optimised but found to be less efficient than those particles stabilised with alkylamine, due to the weaker mode of amine adsorption on the metal surface. The interactions of stabilisers with the metal surface were also analysed using infrared spectroscopy (IR), thermo gravimetric analysis (TGA) and energy dispersive X-ray analysis (EDX). These stabilised ruthenium nanocrystals were then preliminary studied as nanocatalysts for hydrogenation of cinnamylaldehyde which was employed as a reaction probe. Ruthenium nanoparticles prepared via modified polyol and borohydride reductions were both found to be highly active towards cinnamylaldehyde hydrogenation to hydro-cinnamylaldehyde in ethanol.
机译:使用三种不同的制备方法,分别采用改性多元醇还原,硼氢化物还原和相转移法,在溶液中合成了由含聚芳胺化合物(氨基乙基咔唑,氨基蒽和氨基蒽醌)稳定的钌纳米颗粒。相应地比较了它们的产品产率,粒度和粒度分布。广泛研究了搅拌速度,保护剂用量,还原温度和老化时间的影响。使用这些新型的多芳族稳定剂优化了极性相和非极性相之间的相转移,但由于胺在金属表面的吸附模式较弱,因此效率不如那些用烷基胺稳定的颗粒。还使用红外光谱(IR),热重分析(TGA)和能量色散X射线分析(EDX)分析了稳定剂与金属表面的相互作用。然后对这些稳定化的钌纳米晶体进行了初步研究,将其用作肉桂醛加氢的纳米催化剂,并将其用作反应探针。发现通过改性的多元醇和硼氢化物还原制备的钌纳米颗粒对在乙醇中肉桂醛加氢为氢化肉桂醛都具有高活性。

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