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Nanotubular Pt-loaded TiO2 catalysts with vanadium-doping to enhance water-gas shift reaction activity

机译:Nanotubular Pt-loaded TiO2 catalysts with vanadium-doping to enhance water-gas shift reaction activity

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We increased the reactivity of Pt-loaded TiO2 catalysts for the water-gas shift reaction (WGSR) by inducing the TiO2 support to form nanotubes, and by doping it with vanadium (V). To understand the reaction mechanisms and the factors contributing to the increased catalytic activity, we used in situ DRIFTS, XPS, pulsed reaction, and isotopic exchange experiments. The Pt-loaded V-doped tube-shaped TiO2 catalyst exhibited a significantly elevated WGSR activity; this result can be attributed to the catalyst's increased surface area, higher dispersion of loaded metal, and H2O dissociation ability. This study suggests that the modified Pt-loaded TiO2 catalysts have significant potential for use in the WGSR process, and that the combination of TiO2 shape control and V-doping can lead to improved catalytic activity. It also provides a method to directly elucidate the impact of active factors on catalysts by systematic mechanism studies.
机译:我们增加了Pt-loaded二氧化钛的活性催化剂的水气交换反应(WGSR)通过诱导二氧化钛纳米管形成的支持,并通过掺杂钒(V)来理解反应机制和因素有助于提高催化活性,我们使用原位的雪堆,XPS,脉冲反应,同位素交换实验。V-doped管状二氧化钛催化剂表现出一个显著升高WGSR活动;可以归因于催化剂的增加表面积,高分散负载金属,和水分离能力。修改Pt-loaded二氧化钛催化剂巨大的潜力WGSR使用过程,二氧化钛的组合形状控制和V-doping可以改进催化活性。直接阐明活性的影响因素在催化剂系统的机制研究。

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