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CoS Nanosheets Coated with Dopamine-Derived Carbon Standing on Carbon Fiber Cloth as Binder-Free Anode for Li-ion Batteries
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作者 Lianyuan Ji Mingchen Shi +1 位作者 Zengkai Feng Hui Yang 《Journal of Renewable Materials》 EI CAS 2024年第2期259-274,共16页
Cobalt sulphides attract much attention as anode materials for Li-ion batteries(LIBs).However,its poor conductivity,low initial column efficiency and large volume changes during cycling have hindered its further devel... Cobalt sulphides attract much attention as anode materials for Li-ion batteries(LIBs).However,its poor conductivity,low initial column efficiency and large volume changes during cycling have hindered its further development.Herein,novel interlaced CoS nanosheets were firstly prepared on Carbon Fiber Cloth(CFC)by two hydrothermal reactions followed with carbon coating via carbonizing dopamine(CoS NS@C/CFC).As a freestanding anode,the nanosheet structure of CoS not only accommodates the volume variation,but also provides a large interface area to proceed the charge transfer reaction.In addition,CFC works as both a three-dimensional skeleton and an active substance which can further improve the areal capacity of the resulting electrode.Furthermore,the coated carbon combined with the CFC work as a 3D conductive network to facilitate the electron conduction.The obtained CoS NS@C/CFC,and the contrast sample prepared with the same procedure but without carbon coating(CoS NS/CFC),are characterized with XRD,SEM,TEM,XPS and electrochemical measurements.The results show that the CoS NS@C/CFC possesses much improved electrochemical performance due to the synergistic effect of nanosheet CoS,the coated carbon and the CFC substrate,exhibiting high initial columbic efficiency(~87%),high areal capacity(2.5 at 0.15 mA cm−2),excellent rate performance(1.6 at 2.73 mA cm−2)and improved cycle stability(87.5%capacity retention after 300 cycles).This work may provide a new route to explore freestanding anodes with high areal specific capacity for LIBs. 展开更多
关键词 Lithium-ion battery cobalt sulfide carbon coating carbon fiber cloth freestanding anode
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高循环性能的FeCo_(2)S_(4)/碳纤维复合电极材料
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作者 马骏 彭景富 +1 位作者 苏冬云 吉内德·阿里·赛义德 《电源技术》 CAS 北大核心 2022年第12期1457-1460,共4页
对电极材料的结构进行优化设计,提高电活性材料的有效利用率。提出一种简单的一步电沉积双金属硫化物的策略,成功设计并制备了FeCo_(2)S_(4)双金属硫化物,沉积在高导电性、高比表面积碳纤维布上的复合材料,并应用于超级电容器作为电极... 对电极材料的结构进行优化设计,提高电活性材料的有效利用率。提出一种简单的一步电沉积双金属硫化物的策略,成功设计并制备了FeCo_(2)S_(4)双金属硫化物,沉积在高导电性、高比表面积碳纤维布上的复合材料,并应用于超级电容器作为电极材料。通过电沉积法获得的FeCo_(2)S_(4)/CFC(FeCo_(2)S_(4)/碳纤维布)复合材料不仅改善了机械稳定性,并且进一步提升了复合材料的倍率性能和储能能力。研究结果表明:FeCo_(2)S_(4)/CFC具有出色的电化学性能,在1 A/g时具有505.33 F/g的高比电容,并且具有良好的倍率性能(10 A/g时比电容仍达到324 F/g)。出色的倍率性能归因于碳纤维布的加入,提高了复合材料的导电性。同时,对FeCo_(2)S_(4)/CFC材料进行10000次循环后,仍然可保持95.25%的循环稳定性。 展开更多
关键词 铁钴硫化物/碳纤维布 超级电容器 比电容 电极材料
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