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Energy storage materials derived from Prussian blue analogues 被引量:7

Energy storage materials derived from Prussian blue analogues
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摘要 Prussian blue analogues(PBAs) with open frameworks have drawn much attention in energy storage fields due to their tridimensional ionic diffusion path, easy preparation, and low cost. This review summarizes the recent progress of using PBAs and their derivatives as energy storage materials in alkali ions,multi-valent ions, and metal-air batteries. The key factors to improve the electrochemical performance of PBAs as cathode materials in rechargeable batteries were firstly discussed. Several approaches for performance enhancement such as controlling the amounts of vacancies and coordinated water, optimizing morphologies, and depositing carbon coating are described in details. Then, we highlighted the significance of their diverse architectures and morphologies in anode materials for lithium/sodium ion batteries. Finally, the applications of Prussian blue derivatives as catalysts in metal-air batteries are also reviewed, providing insights into the origin of favorable morphologies and structures of catalyst for the optimal performance. Prussian blue analogues (PBAs) with open frameworks have drawn much attention in energy storage fields due to their tridimensional ionic diffusion path, easy preparation, and low cost. This review summarizes the recent progress of using PBAs and their derivatives as energy storage materials in alkali ions, multi-valent ions, and metal-air batteries. The key factors to improve the electrochemical performance of PBAs as cathode materials in rechargeable batteries were firstly discussed. Several approaches for performance enhancement such as controlling the amounts of vacancies and coordinated water, optimizing morphologies, and depositing carbon coating are described in details. Then, we highlighted the significance of their diverse architectures and morphologies in anode materials for lithium/sodium ion batteries. Finally, the applications of Prussian blue derivatives as catalysts in metal-air batteries are also reviewed, providing insights into the origin of favorable morphologies and structures of catalyst for the optimal performance.
出处 《Science Bulletin》 SCIE EI CAS CSCD 2017年第5期358-368,共11页 科学通报(英文版)
基金 supports from the National 1000 Young Talents Program of China the National Nature Science Foundation of China(21603078) National Materials Genome Project(2016YFB0700600) the start-up funding from the University at Buffalo(Buffalo,New York,United States) The State University of New York(SUNY)along with the National Science Foundation(CBET-1511528 and 1604392) United States
关键词 Prussian blue analogues Energy storage Rechargeable battery Open frameworks Cathode materials Anode materials CATALYSTS Prussian blue analogues Energy storage Rechargeable battery Open frameworks Cathode materials Anode materials Catalysts
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