A new graphitic carbon nitride-coated dual Core-Shell sulfur cathode for highly stable lithium-sulfur cells

被引:20
作者
Dunya, Hamza [1 ,2 ]
Yue, Zheng [1 ]
Ashuri, Maziar [3 ]
Mei, Xinyi [4 ]
Lin, Yiwei [1 ]
Kucuk, Kamil [5 ,6 ]
Aryal, Shankar [7 ]
Segre, Carlo U. [5 ,6 ]
Mandal, Braja K. [1 ]
机构
[1] IIT, Dept Chem, Chicago, IL 60616 USA
[2] Bartin Univ, Dept Biotechnol, Bartin, Turkey
[3] IIT, Dept Mech Mat & Aerosp Engn, Chicago, IL 60616 USA
[4] Beijing Jiaotong Univ, Natl Acad Econ Secur, Beijing, Peoples R China
[5] IIT, Dept Phys, Chicago, IL 60616 USA
[6] IIT, CSRRI, Chicago, IL 60616 USA
[7] Argonne Natl Lab, Appl Mat Div, Lemont, IL 60616 USA
关键词
Lithium-sulfur batteries; Graphitic carbon nitride; Lithium polysulfides; Polysulfide shuttle effect; Dual core-shell structure; NITROGEN-DOPED CARBON; ELECTROCHEMICAL PERFORMANCE; GRAPHENE-OXIDE; LONG-LIFE; BATTERIES; POLYSULFIDE; COMPOSITE; HOST; NANOPARTICLES; FRAMEWORK;
D O I
10.1016/j.matchemphys.2020.122842
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Lithium-sulfur (Li-S) batteries have promise to deliver energy density two to three times higher than that of currently used lithium-ion batteries. The commercialization of Li-S batteries is primarily hindered due to the polysulfide shuttle (PSS) effect, which not only leads to the loss of active materials from the cathode, but also causes serious irreversible reactions between the polysulfide intermediates and the lithium metal anode, resulting in low coulombic efficiency, high self-discharge and short cycle life. In this paper, we report the design and synthesis of a new graphitic carbon nitride-coated dual core-shell structured sulfur cathode (S@HCS@g-C3N4) to address these issues, leading to superior capacity retention properties in Li-S cells. This structural design allows confinement of polysulfide intermediates within a dual-core electrically conductive structure consisting of a hollow mesoporous carbon sphere (HCS) core, and a peripheral graphitic carbon nitride (g-C3N4) layer, which is known to suppress the PSS effect by enhanced chemical interactions with polysulfide intermediates. Indeed, the S@HCS@g-C3N4 cathode displayed excellent electrochemical performance in terms of high initial specific capacity (1446 mA h g(-1) at 0.2C) and very good long-term cycling performance (capacity decay rate of 0.049% per cycle after 500 cycles at 1C).
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页数:8
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