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- W4233757696 abstract "Abstract The introduction of a certain proportion of selenium into sulfur‐based cathodes is an effective strategy for enhancing the integrated battery performance. However, similar to sulfur, selenium sulfide cathodes suffer from poor cycling stability owing to the dissolution of reaction intermediate products. In this study, to exploit the advantages of SeS 2 to the full and avoid its shortcomings, we designed and synthesized a hollow mesoporous carbon@titanium nitride (HMC@TiN) host for loading 70 wt % of SeS 2 as a cathode material for Li–SeS 2 batteries. Benefiting from both physical and chemical entrapment by hollow mesoporous carbon and TiN, the HMC@TiN/SeS 2 cathode manifests high utilization of the active material and excellent cycling stability. Moreover, it exhibits promising areal capacity (up to 4 mAh cm −2 ) with stable cell performance in the high‐mass‐loading electrode." @default.
- W4233757696 created "2022-05-12" @default.
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- W4233757696 date "2017-11-13" @default.
- W4233757696 modified "2023-10-16" @default.
- W4233757696 title "Mesoporous Carbon@Titanium Nitride Hollow Spheres as an Efficient SeS<sub>2</sub> Host for Advanced Li–SeS<sub>2</sub> Batteries" @default.
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- W4233757696 doi "https://doi.org/10.1002/ange.201709176" @default.
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