首页> 外文期刊>Journal of Catalysis >Formation of monometallic Au and Pd and bimetallic Au-Pd nanoparticles confined in mesopores via Ar glow-discharge plasma reduction and their catalytic applications in aerobic oxidation of benzyl alcohol
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Formation of monometallic Au and Pd and bimetallic Au-Pd nanoparticles confined in mesopores via Ar glow-discharge plasma reduction and their catalytic applications in aerobic oxidation of benzyl alcohol

机译:通过Ar辉光放电等离子体还原法形成中孔中的单金属Au和Pd以及双金属Au-Pd纳米颗粒的形成及其在苄醇的好氧氧化中的催化应用

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摘要

Successfully prepared via Ar glow-discharge plasma reduction, Au-Pd bimetallic nanoparticles were highly active in the selective oxidation of benzyl alcohol, showing a rate constant of 0.50 h ~(-1), which was 12.5 and 2× that of Au and Pd monometallic catalysts, respectively. Characterization analyses attributed the enhancement in both activity and selectivity to a Pd-rich shell/Au-rich core structure with abundant surface-coordination-unsaturated Pd atoms of those effectively confined and well-dispersed Au-Pd nanoparticles. As a green, efficient, and safe protocol, plasma reduction outperformed conventional H _2 thermal reduction due to the different particle nucleation and growth mechanism, which afforded modified morphology and surface chemistry of metal nanoparticles. Further oxidation and re-reduction of plasma-reduced Au-Pd catalyst resulted in the atomic rearrangement of nanoparticles, leading to inferior catalytic performance.
机译:通过Ar辉光放电等离子体还原成功制备的Au-Pd双金属纳米粒子在苄醇的选择性氧化中具有很高的活性,其速率常数为0.50 h〜(-1),是12.5的速率常数,是Au和Pd的速率常数的2倍。单金属催化剂。表征分析归因于活性和选择性的提高归因于富Pd的壳/ Au富核结构,这些结构具有有效约束和良好分散的Au-Pd纳米粒子的丰富的表面配位-不饱和Pd原子。作为一种绿色,高效,安全的方案,由于不同的颗粒成核和生长机理,等离子体还原性能优于常规的H _2热还原,从而改善了金属纳米颗粒的形貌和表面化学性质。等离子体还原的Au-Pd催化剂的进一步氧化和还原导致纳米粒子的原子重排,从而导致较差的催化性能。

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