2022
DOI: 10.1021/acs.nanolett.2c03320
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Patterning Design of Electrode to Improve the Interfacial Stability and Rate Capability for Fast Rechargeable Solid-State Lithium-Ion Batteries

Abstract: Patterned electrodes were developed for use in solid-state lithium-ion batteries, with the ultimate goal to promote fast-charging attributes through improving electrochemically activated surfaces within electrodes. By a conventional photolithography, patterned arrays of SnO 2 nanowires were fabricated directly on the current collector, and empty channel structures formed between the resulting arrays were customized through modifying the size and interval of the SnO 2 patterns. The composite electrolyte compris… Show more

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Cited by 12 publications
(5 citation statements)
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“…Eqn (2) can be used to gain further insight into the detailed Li-ion storage mechanism 68 contributed by the pseudocapacitive ( k 1 ν ) (surface area dependent) or diffusion ( k 2 ν 0.5 ) process. 69,70 I p = k 1 ν + k 2 ν 0.5 where k 1 and k 2 are constants at given potentials, which can be derived by plotting I ν −0.5 versus ν 0.5 (Fig. 6e).…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…Eqn (2) can be used to gain further insight into the detailed Li-ion storage mechanism 68 contributed by the pseudocapacitive ( k 1 ν ) (surface area dependent) or diffusion ( k 2 ν 0.5 ) process. 69,70 I p = k 1 ν + k 2 ν 0.5 where k 1 and k 2 are constants at given potentials, which can be derived by plotting I ν −0.5 versus ν 0.5 (Fig. 6e).…”
Section: Resultsmentioning
confidence: 99%
“…Eqn (2) can be used to gain further insight into the detailed Li-ion storage mechanism 68 contributed by the pseudocapacitive (k 1 n) (surface area dependent) or diffusion (k 2 n 0.5 ) process. 69,70…”
Section: The Effect Of the Patterned Silicon Anodes On Lithiumion Tra...mentioning
confidence: 99%
“…1). It has been proved that AFM, 40 SEM, 41,43 OM 42 and TEM [44][45][46] can effectively characterize the SEI morphology, and the advanced cryo-EM [47][48][49] technology can more accurately reflect the real interface. XRD, 50,51 XPS, 52 IR, 53 and NMR 54 can be used to effectively characterize the composition and structure of SEI.…”
Section: Advance Characterization Technologiesmentioning
confidence: 99%
“…Recently, Zhu et al constructed an aqueous Ni-Zn microbattery (MB) with ultrahigh rate capability and durability by in situ reconstruction of epitaxial phase nanoporous Ni (Fig. 1(g)) [15] . The surface reconstruction of interconnected nanoporous Ni enables sufficient conductivity and reaction sites, and the as-prepared Ni-Zn MB has a high power density of 320.17 mW/cm 2 and a maximum energy load of 0.26 mW•h/cm 2 (Fig.…”
mentioning
confidence: 99%
“…(h) Ragone plots of the Ni-Zn microbattery. Reproduced with permission [15] , Copyright 2021, Wiley-VCH. (i) Comparison of a usual SnO 2 NW electrode (left-hand) with a new design of micropatterned NW electrode (right-hand).…”
mentioning
confidence: 99%