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Impedance measurements in catalysis:charge transfer in titania supported noble metal catalysts

机译:催化中的阻抗测量:二氧化钛负载的贵金属催化剂中的电荷转移

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Hydrogen treatment of Pt/TiO2 leads to an exceptional increase in electric conductivity even at moderate temperature presumably due to the formation of donor electrons during a superficial reduction process.Interestingly,after cooling to lower temperatures that are typically applied for catalytic reactions the observed high conductivity was largely preserved.The enhanced charge carrier density in titania is assumed to cause a considerable charge transfer between support and metal.In this work we show that this charge transfer is correlated with typical catalytic parameters(e.g.hydrogen adsorption capacity and catalytic activity for a hydrocarbon skeleton reaction).Based on these observations we suggest and discuss a modified charge transfer mechanism in addition to the decoration mechanism as a possible reason for the SMSI effect occurring during hydrogen treatment already at moderate temperatures.
机译:氢气处理的Pt / TiO2即使在中等温度下也会导致电导率异常增加,这大概是由于在表面还原过程中形成了给体电子。有趣的是,在冷却至通常用于催化反应的较低温度后,观察到的高电导率假定二氧化钛中电荷载流子密度的增加会引起载体与金属之间的大量电荷转移。在这项工作中,我们表明这种电荷转移与典型的催化参数(例如氢的吸附能力和对烃的催化活性)相关基于这些观察结果,我们提出并讨论了修饰修饰的电荷转移机制以及修饰机制,这是已经在中等温度下进行氢处理过程中发生SMSI效应的可能原因。

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