Nickel-decorated TiO 2 nanotube arrays as a self-supporting cathode for lithium--sulfur batteries

Lithium-sulfur batteries are considered to be one of the strong competitors to replace lithium-ion batteries due to their large energy density. However, the dissolution of discharge intermediate products to the electrolyte, the volume change and poor electric conductivity of sulfur greatly limit the...

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Veröffentlicht in:Frontiers of materials science 2020, Vol.14 (3), p.266-274
Hauptverfasser: CHEN, Yuming, TANG, Wenhao, MA, Jingru, GE, Ben, WANG, Xiangliang, WANG, Yufen, REN, Pengfei, LIU, Ruiping
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Sprache:eng
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Zusammenfassung:Lithium-sulfur batteries are considered to be one of the strong competitors to replace lithium-ion batteries due to their large energy density. However, the dissolution of discharge intermediate products to the electrolyte, the volume change and poor electric conductivity of sulfur greatly limit their further commercialization. Herein, we proposed a self-supporting cathode of nickel-decorated TiO 2 nanotube arrays (TiO 2 NTs@Ni) prepared by an anodization and electrodeposition method. The TiO 2 NTs with large specific surface area provide abundant reaction space and fast transmission channels for ions and electrons. Moreover, the introduction of nickel can enhance the electric conductivity and the polysulfide adsorption ability of the cathode. As a result, the TiO 2 NTs@Ni-S electrode exhibits significant improvement in cycling and rate performance over TiO 2 NTs, and the discharge capacity of the cathode maintains 719 mA·h·g −1 after 100 cycles at 0.1 C.
ISSN:2095-025X
2095-0268
DOI:10.1007/s11706-020-0509-5