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◆ Angewandte Chemie International Edition2025-12-17· Formate

Spin‐Polarization in Rigid/Soft Layered Oxide Catalyst Regulates Key Intermediates for Efficient CO <sub>2</sub> ‐to‐Formate Conversion

Yangyang Zhang, Genqiang Zhang, Qiangqiang Song, Yanxu Chen, Yifan Li, Xin‐Yao Yu, Fuqiang Huang

原始摘要(英文原文)· Original abstract
Abstract Precise control of metal oxidation states is pivotal in regulating the adsorption energetics of *OCHO intermediate during CO 2 electroreduction. However, the stabilization of oxidation states to enable effective intermediate adsorption–desorption behavior remains a critical challenge for enhancing formate yield. Herein, we synthesize a rigid/soft layered oxides (CuInAlO 4 ) with rigid Al–O framework and soft Cu–O active units. Spin‐polarized electrons derived from the unpaired electrons in the dz 2 orbital of CuO 5 units transfer to the empty 5s/5p orbitals of In 3 ⁺ via the superexchange interaction of 3d(Cu) − 2p(O) − 5s/5p(In). The enhanced spin polarization promotes spin‐orbit coupling between metal sites (Cu, In) and *OCHO intermediates (O), forming In─*O─CH─O*─Cu electronic bridge and greatly improving the formation efficiency of formate. CuInAlO 4 catalyst achieves exceptional formate selectivity (faradaic efficiency of 95% at 500 mA cm −2 , energy efficiency of 80.3%, overpotential of 180 mV), outperforming conventional In─O*─CH─O*─In pathways by reducing the *OCHO‐to‐HCOOH energy barrier by 1.31 eV. Experimental and theoretical analyses reveal that the rigid AlO 5 units stabilize metal‐oxygen bonds, preventing oxygen dissolution, while accelerating formate production kinetics through spin‐polarized charge transfer.
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Spin‐Polarization in Rigid/Soft Layered Oxide Catalyst Regulates Key Intermediates for Efficient CO <sub>2</sub> ‐to‐Formate Conversion — 科研速览 Science Skim