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Reaction mechanisms, key challenges, and future prospects of zinc-ion/magnesium-based batteries: from fundamental researches to electrode/electrolyte engineering

Figure 9. (A) Comparative Mechanism of Zn Deposition on Cu Foil and Cu NS. (B) Comparison of contact angles on different electrodes. (C) Electrochemical performance of asymmetric batteries based on Zn||Cu Foil, Zn||CuO NS, and Zn||Cu NS. (D) Cycling ability of Zn@Cu foil||V2O5 and Zn@Cu NS||V2O5 full cells at 5 A g-1. (A-D) Reprinted with permission from[109]. Copyright 2025, Elsevier; (E) Long-term stripping/plating cycle curves for pure Zn, Zn-0.4Li-0.2Mn, and Zn-0.4Li-1.0Mn symmetric cells. (F) and (G) are SEM images of ZnLiMn alloy and Zn after long-term stripping/galvanizing cycles, respectively. (H) Performance Comparison Between ZnLiMn Batteries and Zn/MnO2 Batteries. (E-H) Reprinted with permission from[110]. Copyright 2022, Wiley. SEM: Scanning electron microscopy.

Energy Materials
ISSN 2770-5900 (Online)
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