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Li_(2)ZnTi_(3)O_(8) anode:design from material to electrode and devices
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作者 Huanhuan Liu Xue Zhang +4 位作者 Haoran Xu Wenzhao Ma Lijuan Wang Zhaohui Meng Fei Wang 《Inorganic Chemistry Frontiers》 2023年第17期4943-4980,共38页
Spinel Li_(2)ZnTi_(3)O_(8),as a zero volumetric change material,is a promising anode for electrochemical energy storage devices.Compared with commercial graphite,Li_(2)ZnTi_(3)O_(8) provides high operating potentials ... Spinel Li_(2)ZnTi_(3)O_(8),as a zero volumetric change material,is a promising anode for electrochemical energy storage devices.Compared with commercial graphite,Li_(2)ZnTi_(3)O_(8) provides high operating potentials of 0.5 and 1 V,offering high safety.Compared with commercial Li4Ti5O12,Li_(2)ZnTi_(3)O_(8) possesses relatively large theoretical specific capacity of 229 mA h g^(−1) and low synthesis cost.However,Li_(2)ZnTi_(3)O_(8) suffers low electronic conductivity,resulting in poor electrochemical performance.A material modification process is a common strategy to overcome the issue of Li_(2)ZnTi_(3)O_(8) and has been mainly focused on in previous reviews.The investigations and achievements are rarely summarized for research on subsequent processes after a material modification process,such as electrode and device designs.In this review,the designs from material to electrode and device are completely reviewed.The design schemes mainly include(1)modifying the surface,doping by heterogeneous ions,and shortening the diffusion distance of Li+ions by designing nanostructure or porous structure on the material level,(2)optimizing binder and Cu current collector and designing flexible electrode structure on the electrode level,and(3)rational construction of lithium-ion full cells and lithium-ion capacitors on the device level.It is believed that rational designs can ensure superior performance for Li_(2)ZnTi_(3)O_(8)-based energy storage and conversion devices.In addition,the work sums up theoretical studies on the basic structure and electronic properties via the first principles calculations and mechanism of capacity-rising of Li_(2)ZnTi_(3)O_(8) upon cycling,which will provide much comprehensive knowledge and understanding of Li_(2)ZnTi_(3)O_(8). 展开更多
关键词 theoretical specific capacity spinel Li ZnTi O electrochemical performan electronic conductivityresulting anode electrode design zero volumetric change materialis electrochemical energy storage
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