首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Skeletal Au prepared from Au-Zr amorphous alloys with controlled atomic compositions and arrangement for active oxidation of benzyl alcohol
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Skeletal Au prepared from Au-Zr amorphous alloys with controlled atomic compositions and arrangement for active oxidation of benzyl alcohol

机译:由Au-Zr非晶态合金制备的骨架Au,具有可控的原子组成和用于苯甲醇的主动氧化的装置

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Skeletal (nanoporous) gold catalysts were prepared from Au-Zr amorphous alloys by immersion in HF solution to extract Zr moieties. The catalytic performance of the skeletal Au catalyst for the oxidation of benzyl alcohol to benzaldehyde was examined using O-2 as an oxidant. The amount of benzaldehyde formed over skeletal Au treated with HF solution for 1 h was the highest among the prepared samples, despite the tow surface area. Detailed characterization indicated that residual ZrO2 species on the skeletal Au promoted the oxidation reaction. The oxygen storage capacity (OSC) of skeletal Au was measured for the quantitative estimation of active sites and showed a positive correlation with the catalytic activity of skeletal Au, verifying the presence of Au-ZrO2 interfaces. Skeletal Au was also prepared from a Au-Zr crystalline alloy and its catalytic activity was compared with that of the one prepared from the amorphous alloy. The atomic arrangement of the Au-Zr amorphous alloy had a strong effect on the catalytic activity due to the surface structure (coordination number and morphology) of skeletal Au. The unsaturated Au atoms created in the skeletal Au catalysts contributed to the reduction of activation energy for oxidation of benzyl alcohol.
机译:通过浸入HF溶液中以提取Zr部分,由Au-Zr非晶态合金制备骨架(纳米孔)金催化剂。使用O-2作为氧化剂,研究了骨架金催化剂对苯甲醇氧化为苯甲醛的催化性能。尽管丝束的表面积很大,但用HF溶液处理1小时的骨骼Au上形成的苯甲醛的量最高。详细的表征表明,骨架金上残留的ZrO2物种促进了氧化反应。测量了骨架Au的储氧能力(OSC)以定量评估活性位点,并显示出与骨架Au的催化活性正相关,证明了Au-ZrO2界面的存在。骨架金也由Au-Zr晶体合金制备,并将其催化活性与由非晶态合金制备的Au进行比较。由于骨架Au的表面结构(配位数和形态),Au-Zr非晶态合金的原子排列对催化活性具有强烈的影响。在骨架金催化剂中产生的不饱和金原子有助于降低苄醇氧化的活化能。

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