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钯的局部结构和尺寸与钯/二氧化钛光催化重整甲醇活性的相关性

Pd local structure and size correlations to the activity of Pd/TiO for photocatalytic reforming of methanol.

作者信息

Abdullah Norli, Bahruji Hasliza, Rogers Scott M, Wells Peter P, Catlow C Richard A, Bowker Michael

机构信息

The UK Catalysis Hub, Research Complex at Harwell, Harwell, Oxon, OX11 0FA, UK and Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, UK and Department of Chemistry, Centre for Foundation Defence Studies, National Defence University of Malaysia, 57000, Malaysia.

The UK Catalysis Hub, Research Complex at Harwell, Harwell, Oxon, OX11 0FA, UK and Centre of Advance Material and Energy Sciences, Universiti Brunei Darussalam, Jalan Tungku Link, BE 1410, Brunei.

出版信息

Phys Chem Chem Phys. 2019 Jul 24;21(29):16154-16160. doi: 10.1039/c9cp00826h.

Abstract

The interaction between Pd and TiO2 for promoting photocatalytic activity was investigated by tailoring the size of Pd nanoparticles and monitoring the photocatalytic activity of methanol photo-reforming reaction for hydrogen gas production. We show that at 0.6 wt% Pd loading, the catalyst with highly dispersed nanoparticles obtained at 1 °C temperature exhibits superior photocatalytic activity for hydrogen gas production. At different weights of Pd loading, tailoring two sets of catalysts with different structural properties provides correlation between the changes in the Pd local structures and the rate of hydrogen production. The impact of controlling the structural properties of metal nanoparticles on influencing H2 production outweighs the effect of metal loading variation. The differences of Pd/TiO2 activity at the different metal loadings were correlated with the changes in the Pd local structure consequently affecting the electronic transfer and photocatalytic efficiency.

摘要

通过调整钯纳米颗粒的尺寸并监测甲醇光重整制氢反应的光催化活性,研究了钯与二氧化钛之间促进光催化活性的相互作用。我们表明,在钯负载量为0.6 wt%时,在1℃温度下获得的具有高度分散纳米颗粒的催化剂对氢气生产表现出优异的光催化活性。在不同的钯负载量下,定制两组具有不同结构性质的催化剂,揭示了钯局部结构的变化与产氢速率之间的关联。控制金属纳米颗粒的结构性质对产氢的影响超过了金属负载量变化的影响。不同金属负载量下钯/二氧化钛活性的差异与钯局部结构的变化相关,从而影响电子转移和光催化效率。

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