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Tuning of Catalytic Activity by Thermoelectric Materials for Carbon Dioxide Hydrogenation

机译:热电材料对二氧化碳加氢催化活性的调节

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摘要

An innovative use of a thermoelectric material (BiCuSeO) as a support and promoter of catalysis for CO2 hydrogenation is reported here. It is proposed that the capability of thermoelectric materials to shift the Fermi level and work function of a catalyst lead to an exponential increase of catalytic activity for catalyst particles deposited on its surface. Experimental results show that the CO2 conversion and CO selectivity are increased significantly by a thermoelectric Seebeck voltage. This suggests that the thermoelectric effect can not only increase the reaction rate but also change chemical equilibrium, which leads to the change of thermodynamic equilibrium for the conversion of CO2 in its hydrogenation reactions. It is also shown that this thermoelectric promotion of catalysis enables BiCuSeO oxide itself to have a high catalytic activity for CO2 hydrogenation. The generic nature of the mechanism suggests the possibility that many catalytic chemical reactions can be tuned in situ to achieve much higher reaction rates, or at lower temperatures, or have better desired selectivity through changing the backside temperature of the thermoelectric support.
机译:本文报道了热电材料(BiCuSeO)作为CO2加氢催化的载体和促进剂的创新用途。提出热电材料改变费米能级和催化剂的功函数的能力导致对沉积在其表面上的催化剂颗粒的催化活性成指数增加。实验结果表明,热电塞贝克电压可显着提高CO2转化率和CO选择性。这表明,热电效应不仅可以提高反应速率,而且可以改变化学平衡,从而导致CO2加氢反应转化过程中热力学平衡的改变。还显示出这种催化的热电促进使得BiCuSeO氧化物本身具有对CO 2加氢的高催化活性。该机理的一般性质暗示了许多催化化学反应可以原位调节以实现更高的反应速率或在更低的温度下发生的可能性,或者通过改变热电载体的背面温度而具有更好的所需选择性。

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