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Heteroatom dopings and hierarchical pores of graphene for synergistic improvement of lithium-sulfur battery performance

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摘要 Lithium-sulfur batteries have attracted wide research interest due to their high specific capacity(1675 mA h g^(-1))and high specific energy(2500 W h kg^(-1)).Herein,the two-dimensional nitrogen/sulfur synchronous-doped few-layer graphene(N,S-FLG)was prepared by a simple calcination route at 900℃under an argon atmosphere with g-C_(3)N_(4)as a structural template.The calcination temperature favorably adjusted the doping levels and surface texture of the as-obtained samples.Relying on the synergistic interaction of the structural traits,as the reservoir of sulfur,NS-FLG-900(calcination temperature 900℃)can maintain a reversible capacity of 602 mA h g^(-1)after 300 cycles at a current density of 0.8 A g^(-1)and 506.4 mA h g^(-1)after 500 cycles at a current density of 1.6 A g^(-1).The outstanding performance is obtained due to the synergistic effect of the introduction of N and S into the carbon lattice,the high pore volume(1.31 cm^(3)g^(-1))and large specific surface area(460.9 m^(2)g^(-1)).
出处 《Inorganic Chemistry Frontiers》 2018年第5期1053-1061,共9页 无机化学前沿(英文)
基金 financial supports provided by the National Natural Science Fund of China(No.21601108) Young Scholars Program of Shandong University(2017WLJH15) the Fundamental Research Funds of Shandong University(No.2016JC033,2016GN010) the Taishan Scholar Project of Shandong Province(No.ts201511004).

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