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- W2906688806 endingPage "1804257" @default.
- W2906688806 startingPage "1804257" @default.
- W2906688806 abstract "The electrocatalytic reduction of CO2 provides a sustainable way to mitigate CO2 emissions, as well as store intermittent electrical energy into chemicals. However, its slow kinetics and the lack of ability to control the products of the reaction inhibit its industrial applications. In addition, the immature mechanistic understanding of the reduction process makes it difficult to develop a selective, scalable, and stable electrocatalyst. Carbon-based materials are widely considered as a stable and abundant alternative to metals for catalyzing some of the key electrochemical reactions, including the CO2 reduction reaction. In this context, recent research advances in the development of heterogeneous nanostructured carbon-based catalysts for electrochemical reduction of CO2 are summarized. The leading factors for consideration in carbon-based catalyst research are discussed by analyzing the main challenges faced by electrochemical reduction of CO2 . Then the emerging metal-free doped carbon and aromatic N-heterocycle catalysts for electrochemical reduction of CO2 with an emphasis on the formation of multicarbon hydrocarbons and oxygenates are discussed. Following that, the recent progress in metal-nitrogen-carbon structures as an extension of carbon-based catalysts is scrutinized. Finally, an outlook for the future development of catalysts as well as the whole electrochemical system for CO2 reduction is provided." @default.
- W2906688806 created "2019-01-11" @default.
- W2906688806 creator A5025575003 @default.
- W2906688806 creator A5032348918 @default.
- W2906688806 creator A5066738831 @default.
- W2906688806 creator A5071139658 @default.
- W2906688806 creator A5089906202 @default.
- W2906688806 date "2018-12-27" @default.
- W2906688806 modified "2023-10-17" @default.
- W2906688806 title "Emerging Carbon‐Based Heterogeneous Catalysts for Electrochemical Reduction of Carbon Dioxide into Value‐Added Chemicals" @default.
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