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- W2988979194 abstract "Significance Electrochemical reduction of CO 2 to useful chemicals or fuels is critical to closing the carbon cycle and preventing further deterioration of the environment/climate. This work addresses the low-energy-efficiency problem of CO 2 reduction limited by sluggish oxygen evolution reaction (OER) on the anode side. The only active OER catalysts for coupling CO 2 reduction in neutral conditions are based on noble metals such as Ir, Ru, and gold. Herein, we developed a nonprecious-metal-based OER anode with higher activity and stability than those based on noble-metal catalysts IrO 2 and Ir/C. We integrated our anode with a selective CO 2 reduction cathode to achieve >97% conversion of CO 2 to CO and a record-setting high energy efficiency for CO 2 conversion." @default.
- W2988979194 created "2019-11-22" @default.
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- W2988979194 date "2019-11-13" @default.
- W2988979194 modified "2023-10-10" @default.
- W2988979194 title "Highly active oxygen evolution integrated with efficient CO <sub>2</sub> to CO electroreduction" @default.
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- W2988979194 doi "https://doi.org/10.1073/pnas.1915319116" @default.
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