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Exploring the ternary interactions in Cu–ZnO–ZrO2 catalysts for efficient CO2 hydrogenation to methanol

机译:探索Cu-ZnO-ZrO2催化剂中的三元相互作用以有效地将CO2加氢成甲醇

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摘要

The synergistic interaction among different components in complex catalysts is one of the crucial factors in determining catalytic performance. Here we report the interactions among the three components in controlling the catalytic performance of Cu–ZnO–ZrO2 (CZZ) catalyst for CO2 hydrogenation to methanol. The in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) measurements under the activity test pressure (3 MPa) reveal that the CO2 hydrogenation to methanol on the CZZ catalysts follows the formate pathway. Density functional theory (DFT) calculations agree with the in situ DRIFTS measurements, showing that the ZnO–ZrO2 interfaces are the active sites for CO2 adsorption and conversion, while the presence of metallic Cu is also necessary to facilitate H2 dissociation and to provide hydrogen resource. The combined experiment and DFT results reveal that tuning the interaction between ZnO and ZrO2 can be considered as another important factor for designing high performance catalysts for methanol generation from CO2.
机译:复杂催化剂中不同组分之间的协同相互作用是决定催化性能的关键因素之一。在这里,我们报告了在控制Cu–ZnO–ZrO2(CZZ)催化剂将CO2加氢成甲醇的催化性能中这三种成分之间的相互作用。在活性测试压力(3 MPa)下的原位漫反射红外傅里叶变换光谱(DRIFTS)测量表明,CZZ催化剂上的CO2加氢成甲醇遵循甲酸盐途径。密度泛函理论(DFT)计算与原位DRIFTS测量结果一致,表明ZnO-ZrO2界面是CO2吸附和转化的活性位点,同时金属Cu的存在对于促进H2分解和提供氢资源也是必需的。结合实验和DFT结果表明,调节ZnO和ZrO2之间的相互作用可被认为是设计由CO2生成甲醇的高性能催化剂的另一个重要因素。

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