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Electrochemical reduction of CO2 to synthesis gas on CNT supported CuxZn1-x O catalysts

机译:CNT上CUXZN1-X O催化剂上CO2对合成气的电化学还原

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摘要

Electrochemical CO2 reduction is a promising method for the production of CO2 neutral fuels and chemicals from renewable electricity. ZnO supported on CNT is a low-cost electro catalyst that can produce syngas from CO2 and H2O. A rational catalyst design strategy for further improvement of the ZnO/CNT catalyst is to dope with copper to strengthen the binding energy of the CO intermediate, which could improve the activity. In this work, a series of CuZnO/CNT catalysts with intimate Cu and Zn contact and various Cu loadings are prepared. By varying the copper content we show that the synergy of copper and zinc improves the activity for CO formation, and the optimal copper content is 20 at%. On hydrogen evolution, the addition of copper has a two-fold effect. This reaction is enhanced by the reduced ZnO particle size obtained when copper is added, but at similar particle sizes of ZnO, a suppression is observed with increasing copper content as CO evolution is enhanced. Stability tests showed that pure ZnO phase is more stable than metallic copper on ZnO. Compared with polycrystalline silver, the CuZnO/CNT catalysts are more active for syngas formation at a useful CO: H-2 composition. This work demonstrates that the viability of DFT based rational design of electrochemical CO2 reduction catalyst. By varying CuZnO composition as well as crystallite size, one is able to tune the electrochemical reduction activity towards CO and H-2, and therefore achieve desired syngas ratio.
机译:电化学CO2还原是一种利用可再生电力生产CO2中性燃料和化学品的有前途的方法。碳纳米管负载氧化锌是一种低成本的电催化剂,可以从二氧化碳和水生成合成气。进一步改进ZnO/CNT催化剂的一个合理的催化剂设计策略是掺铜以增强CO中间体的结合能,从而提高催化剂的活性。本文制备了一系列铜锌紧密接触、铜负载量不同的CuZnO/CNT催化剂。通过改变铜含量,我们发现铜和锌的协同作用提高了CO生成活性,最佳铜含量为20 at%。在析氢过程中,铜的加入具有双重效果。当添加铜时,减小的ZnO粒径增强了该反应,但在类似的ZnO粒径下,随着铜含量的增加,随着共析作用的增强,观察到抑制作用。稳定性测试表明,纯ZnO相比金属铜在ZnO上更稳定。与多晶银相比,CuZnO/CNT催化剂在有用的CO:H-2组分下对合成气的形成更具活性。这项工作证明了基于DFT的电化学CO2还原催化剂合理设计的可行性。通过改变CuZnO的组成和晶粒大小,可以调节电化学还原活性,从而达到所需的合成气比。

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