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ZnO based naeowires grown by chemical vapour deposition for selective hydrogenation of acetylene alcohols

机译:通过化学蒸气沉积生长的基于ZnO的Naeowires,用于选择性氢化乙炔醇

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摘要

Vertically aligned ZnO nanowires (NWs) with a length of 1.5-10 urn and a mean diameter of ca. 150 nm were grown by chemical vapour deposition onto a c-oriented ZnO seed layer which was deposited by atomic layer deposition on Si substrates. The substrates were then spin-coated with an ethanol solution containing Pd nanoparticles with an average size of 2.7 and 4.5 nm. A homogeneous distribution of the Pd nanoparticles on ZnO NWs has been obtained using both Pd particle series. The catalytic activity of the ZnO NWs and Pd/ZnO NWs catalysts was measured in the semihydrogenation of 2-methyl-3-butyn-2-ol at 303-343 K and a pressure of 2-10 bar. The effect of the solvent used on the catalytic performance of the Pd/ZnO NWs catalyst was studied. The Pd/ZnO catalysts showed alkene selectivity of up to 95% at an alkyne conversion of 99%. A kinetic model is proposed to explain the activity and selectivity of the ZnO support and Pd/ZnO catalysts.
机译:垂直对齐的ZnO纳米线(NWS),长度为1.5-10,平均直径为Ca。 150 nm通过化学蒸气沉积生长至面向C的ZnO种子层,该层通过原子层沉积沉积在Si底物上。 然后将底物用含有平均大小为2.7和4.5 nm的PD纳米颗粒的乙醇溶液旋转。 使用两个PD粒子系列获得了ZnO NWS上PD纳米颗粒的均匀分布。 ZnO NWS和PD/ZnO NWS催化剂的催化活性在303-343 K时的2-甲基-3-丁烷-2-OL的半氢化中测量,压力为2-10 bar。 研究了使用溶剂对PD/ZnO NWS催化剂催化性能的影响。 PD/ZnO催化剂在99%的炔烃转化时显示出高达95%的烯烃选择性。 提出了动力学模型来解释ZnO支持和PD/ZnO催化剂的活性和选择性。

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