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Updated: Jan 9, 2026

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Published on: November 7, 2025
Synergistic Cu-Zr and Cu-Mn Dual-Interfaces Boost CO2 Hydrogenation to Methanol
Zixin Wang1, Mengqi Hu1, Chuan Qin1
1Interdisciplinary Institute of NMR and Molecular Sciences, School of Chemistry and Chemical Engineering, Hubei Province for Coal Conversion and New Carbon Materials, Wuhan University of Science and Technology, Wuhan 430081, P. R. China.
Abstract:
Designing highly active and stable Cu-based catalysts for CO2 hydrogenation to methanol is challenging due to an insufficient understanding of the critical role of interfacial sites. In this work, we construct a high-performance CuZrMn catalyst with abundant Cu-Zr/Cu-Mn dual interfaces. The optimized CZM-3 catalyst exhibits a CO2 conversion of 23.9% and a high methanol space-time yield of 857 g kgcat-1 h-1 under conditions of 4.5 MPa and 260 °C. By integrating in situ DRIFTS, TPSR-MS, and transient pulse experiments, we reveal a synergistic dual-channel mechanism involving *HOCO/*CO and *HCOO intermediates: Cu-Zr interfaces stabilize and hydrogenate *HCOO to methanol, while Cu-Mn interfaces promote CO2 activation, generating substantial *HOCO/*CO species. This synergy ensures efficient CO2 activation and high methanol productivity. This work provides a molecular-level understanding of interfacial synergy and establishes a design principle for high-performance CO2 hydrogenation catalysts.
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