硫黄
阴极
锂(药物)
材料科学
吸附
锂硫电池
化学工程
电池(电)
硫化物
硫化氢
功率密度
电流密度
无机化学
电极
化学
电化学
功率(物理)
冶金
物理化学
热力学
医学
物理
量子力学
工程类
内分泌学
作者
Jiao Xiang,Yuanduo Qu,Muwei Ji,Yu‐Jia Zeng,Su Qin Hu,Huiling Xu,Hong Xia,Lianfeng Duan,Fushen Lu
标识
DOI:10.34133/energymatadv.0054
摘要
Lithium–sulfur batteries are considered important devices for the power of movable equipment, but there are still some challenges that limit their applications, such as how to obtain a cathode for high sulfide adsorption and rapid conversion. Here, a new strategy is proposed to enhance the performance of lithium–sulfur batteries by growing 3-dimensional hydrogen-substituted graphdiyne (HsGDY) layers on Ni foam via Glaser cross-coupling reaction to anchor MoS 2 /Ni 3 S 2 , enhancing the conductivity of host material of S. The results show that the 3-dimensional HsGDY framework enables the fast adsorption of lithium polysulfides and the Ni 3 S 2 /MoS 2 performs as the reaction center with a low charge transfer resistance. The charge capacity of Ni@HsGDY/MoS 2 /Ni 3 S 2 cell is up to 1,234.7 mAh·g −1 at the first circle, and the specific capacity keeps 486 mAh·g −1 after 500 cycles at a current density of 2 C. The incorporation of HsGDY into the cathode promotes the adsorption and the conversion of polysulfides, paving a path to obtain lithium–sulfur batteries with high energy density.
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