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- W3198717967 endingPage "2106114" @default.
- W3198717967 startingPage "2106114" @default.
- W3198717967 abstract "The uneven electrodeposition and inferior corrosion resistance are the fundamental obstacles to achieve stable Zn metal anodes. The features of the electrode surface/interface are closely correlated with the properties. Herein, the Zn surface with more exposed (002)Zn planes is modified through a simple acid-etching approach. The in situ generated zinc compounds form an interface layer with strong adhesion to the Zn electrode, which can enhance the Zn2+ ion kinetics and regulate the deposition/dissolution behaviors. A variety of acids with functional cations are selected, among which the phosphoric acid etches the Zn with a higher extent of texturing and generates a more compact layer. The obtained zinc phosphate@Zn electrode enables stable cycling and fast kinetics in symmetrical and full Zn metal batteries. This study provides a new example of combined surface and interface modification toward high-performance aqueous zinc metal anodes." @default.
- W3198717967 created "2021-09-13" @default.
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- W3198717967 date "2021-09-01" @default.
- W3198717967 modified "2023-10-11" @default.
- W3198717967 title "Stable Zinc Metal Anodes with Textured Crystal Faces and Functional Zinc Compound Coatings" @default.
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- W3198717967 doi "https://doi.org/10.1002/adfm.202106114" @default.
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