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Lithiophilic Sn-Co nano-seeds sealed in a hollow carbon shell to stabilize lithium metal anodes.
Li Q, Zhang J, Zeng Y, Tang Z, Sun D, Peng Z, Tang Y, Li H, Wang H. Li Q, et al. Among authors: li h. Chem Commun (Camb). 2022 Aug 16;58(66):9194-9197. doi: 10.1039/d2cc02932d. Chem Commun (Camb). 2022. PMID: 35894590
A lithiophilic Sn-Co nano-seed sealed in a nitrogen-doped carbon shell is designed to stabilize lithium metal anodes, in which lithiophilic alloys can regulate lithium deposition behavior and the hollow carbon shell is beneficial to prevent agglomeration. The modified lithium ano …
A lithiophilic Sn-Co nano-seed sealed in a nitrogen-doped carbon shell is designed to stabilize lithium metal anodes, in which lithiophilic …
Engineering Oxygen Vacancies in In2O3 with Enhanced Polysulfides Immobilization and Selective Catalytic Capability.
Wang N, Li H, Ji J, Liu J, Zhang Q, Ma S, Lu J, Bai Z. Wang N, et al. Among authors: li h. Small. 2024 May 11:e2401567. doi: 10.1002/smll.202401567. Online ahead of print. Small. 2024. PMID: 38733220
Contributed by the unique selective catalytic capability, the prepared H-In(2)O(3) exhibits excellent electrochemical performance when used as sulfur host. ...This work presents a typical example for designing advanced sulfur hosts, which is crucial for the commercializati …
Contributed by the unique selective catalytic capability, the prepared H-In(2)O(3) exhibits excellent electrochemical performance whe …
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