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首页> 外文期刊>Journal of nanoscience and nanotechnology >Hydrogenation of 1-Nitroanthraquinone to 1-Aminoanthraquinone Catalyzed by Bimetallic CuPtx Nanoparticles
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Hydrogenation of 1-Nitroanthraquinone to 1-Aminoanthraquinone Catalyzed by Bimetallic CuPtx Nanoparticles

机译:由双金属Cuptx纳米粒子催化1-硝基蒽醌至1-氨基蒽醌的氢化

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摘要

Bimetallic CuPtx nanoparticles were prepared in ethanol solution by the wet chemical reduction method using Cu(NO3)(2) and H-2 PtCl6 as starting materials, hydrazine hydrate as a reductant, and polyvinyl pyrrolidone as an organic modifier. The average particle sizes of Cu and Pt nanoparticles were 60 nm and 3 nm, respectively. The small-sized Pt nanoparticles were evenly anchored at the surfaces of large-sized Cu nanoparticles, forming Cu @ Pt core-shell structured nanocomposites. In the bimetallic CuPtx nanoparticles, electron was transferred from platinum to copper species, which increased the selectivity of 1-aminoanthraquinone by suppressing the high hydrogenation activity of metallic platinum. The OuPt(0.1 )bimetallic nanoparticles exhibited higher catalytic activity for the hydrogenation of 1-nitroanthraquinone to 1-aminoanthraquinone than both monometallic Cu and Pt nanoparticles. Over the CuPt0.1 catalyst, the selectivity of 1-aminoanthraquinone was 99.3% at the 1-nitroanthraquinone conversion of 98.9%.
机译:通过使用Cu(NO 3)(2)和H-2 PTCL6作为原料,作为还原剂的肼水合物,作为有机改性剂的聚乙烯吡咯烷酮,在乙醇溶液中用乙醇溶液制备双金属Cuptx纳米粒子。 Cu和Pt纳米颗粒的平均粒径分别为60nm和3nm。小尺寸的Pt纳米颗粒在大尺寸Cu纳米粒子的表面上均匀地锚固,形成Cu @ Pt核壳结构纳米复合材料。在双金属Cuptx纳米颗粒中,通过抑制金属铂的高氢化活性,从铂转移到铜物质中的选择性增加1-氨基蒽醌。 Oupt(0.1)双金属纳米颗粒表现出较高的催化活性,用于氢化1-硝基蒽醌至1-氨基蒽醌,而不是单金属金属Cu和Pt纳米颗粒。在Cupt0.1催化剂上,1-氨基蒽醌的选择性为99.3%,在1-硝基蒽醌转化率为98.9%。

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