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Advances in efficient electrocatalysts based on layered double hydroxides and their derivatives 被引量:12

Advances in efficient electrocatalysts based on layered double hydroxides and their derivatives
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摘要 The explore and development of electrocatalysts have gained significant attention due to their indispensable status in energy storage and conversion systems, such as fuel cells, metal–air batteries and solar water splitting cells. Layered double hydroxides(LDHs) and their derivatives(e.g., transition metal alloys, oxides, sulfides, nitrides and phosphides) have been adopted as catalysts for various electrochemical reactions, such as oxygen reduction, oxygen evolution, hydrogen evolution, and COreduction, which show excellent activity and remarkable durability in electrocatalytic process. In this review, the synthesis strategies, structural characters and electrochemical performances for the LDHs and their derivatives are described. In addition, we also discussed the effect of electronic and geometry structures to their electrocatalytic activity. The further development of high-performance electrocatalysts based on LDHs and their derivatives is covered by both a short summary and future outlook from the viewpoint of the material design and practical application. The explore and development of electrocatalysts have gained significant attention due to their indispensable status in energy storage and conversion systems, such as fuel cells, metal–air batteries and solar water splitting cells. Layered double hydroxides(LDHs) and their derivatives(e.g., transition metal alloys, oxides, sulfides, nitrides and phosphides) have been adopted as catalysts for various electrochemical reactions, such as oxygen reduction, oxygen evolution, hydrogen evolution, and CO_2 reduction, which show excellent activity and remarkable durability in electrocatalytic process. In this review, the synthesis strategies, structural characters and electrochemical performances for the LDHs and their derivatives are described. In addition, we also discussed the effect of electronic and geometry structures to their electrocatalytic activity. The further development of high-performance electrocatalysts based on LDHs and their derivatives is covered by both a short summary and future outlook from the viewpoint of the material design and practical application.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第6期1094-1106,共13页 能源化学(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.U1462118 21601011) the 973 Program(Grant No.2014CB932102) the Fundamental Research Funds for the Central Universities(buctrc201506 PYCC1704)
关键词 Layered double hydroxide DERIVATIVES ELECTROCATALYSIS Oxygen reduction Water splitting CO_2 reduction Electronic structure Hierarchical structure Metal–air battery Fuel cell Layered double hydroxide Derivatives Electrocatalysis Oxygen reduction Water splitting CO_2 reduction Electronic structure Hierarchical structure Metal–air battery Fuel cell
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