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作 者:Shi-Min Wang Hua-Ni Li Gen-Fu Zhao Lu-Fu Xu Dang-Ling Liu Yong-Jiang Sun Hong Guo
机构地区:[1]School of Materials and Energy,Yunnan University,Kunming,650091,China
出 处:《Rare Metals》2023年第2期515-524,共10页稀有金属(英文版)
基 金:financial support provided by the National Natural Science Foundation of China(No.52064049);the Key National Natural Science Foundation of Yunnan Province(No.2019FY003023);the International Joint Research Center for Advanced Energy Materials of Yunnan Province(No.202003AE140001);the Key Laboratory of Solid State Ions for Green Energy of Yunnan University(No.2019);the Analysis and Measurements Center of Yunnan University for the sample testing service。
摘 要:Lithium-sulfur(Li-S)battery is one of the newgeneration energy storage systems with great potential.However,the development of Li-S battery now is hampered by the shuttle effect and depressed redox kinetics.Herein,we report a composite of Ni_(3)FeN nanoparticles anchored in grid-like porous carbon(PC)spheres as an effective cathode electrocatalyst with simultaneous polysulfide trapping and rapid polysulfides conversion in Li-S battery.The multi-cavity structure of PC with high-efficiency encapsulation ability can significantly improve sulfur utilization and confinement.Furthermore,Ni_(3)FeN nanoparticles embedded in PC cavities render highly active catalytic sites to promote the redox conversion of solvated poly sulfide,as revealed by the electrochemical results.Moreover,the catalytic mechanism is further analyzed through density functional theory calculations and in-situ Fourier transform infrared analysis.As a result,PC@Ni_(3)FeN@S cathode delivers an outstanding capacity of 1294mAh·g^(-1)at 0.1C and low decay rates of 0.10%per cycle over 500 cycles at 0.5C.
关 键 词:Porous structures Ni_(3)FeN nanoparticle Polysulfides electrocatalyst Lithium-sulfur(Li-S)batteries
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