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

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作者
Yuhao Wang
Shyam Kattel
Wengui Gao
Kongzhai Li
Ping Liu
Jingguang G. Chen
Hua Wang
机构
[1] Kunming University of Science and Technology,State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Engineering
[2] Kunming University of Science and Technology,Faculty of Metallurgical and Energy Engineering
[3] Brookhaven National Laboratory,Chemistry Division
[4] Columbia University,Department of Earth and Environmental Engineering
[5] Columbia University,Department of Chemical Engineering
[6] Dali University,School of Pharmacy and Chemistry
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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.
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