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Tuning the synthesis of platinum-copper nanoparticles with a hollow core and porous shell for the selective hydrogenation of furfural to furfuryl alcohol

机译:调优platinum-copper的合成纳米粒子与一个中空的核心和多孔层选择性加氢的糠醛糠醇

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摘要

Pt-Cu nanoparticles constructed with a hollow core and porous shell have been synthesized in which Pt-Cu cages with multi-porous outermost shells are formed at the initial stage and then the Pt and Cu atoms in solution continuously fed these hollow-core of cages by passing through the porous tunnels of the outermost shells, finally leading to the formation of hollow structures with different sizes. Furthermore, these hollow-core Pt-Cu nanoparticles are more effective than the solid-core Pt-Cu nanoparticles for the catalytic hydrogenation of furfural toward furfuryl alcohol. The former can achieve almost 100% conversion of furfural with 100% selectivity toward the alcohol.
机译:Pt-Cu纳米粒子由一个中空的核心和多孔壳牌已经合成的Pt-Cu笼子multi-porous外层壳在初始阶段形成然后工党美联储这些,在溶液中铜原子不断空气通过的笼子里多孔隧道的最外层壳,终于空心结构的形成有不同的大小。并用Pt-Cu纳米颗粒更有效的实芯Pt-Cu纳米颗粒糠醛催化加氢糠醇。近100%转换糠醛的100%选择性的酒精。

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