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    Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/10259/11378

    Título
    Complete Prevention of Dendrite Formation in Zn Metal Anodes by Means of Pulsed Charging Protocols
    Autor
    García, Grecia
    Ventosa Arbaizar, EdgarAutoridad UBU Orcid
    Schuhmann, Wolfgang
    Publicado en
    ACS Applied Materials & Interfaces. 2017, V. 9, n. 22, p. 18691-18698
    Editorial
    American Chemical Society
    Fecha de publicación
    2017-05
    ISSN
    1944-8244
    DOI
    10.1021/acsami.7b01705
    Zusammenfassung
    Zn metal as anode in rechargeable batteries, such as Zn/air or Zn/Ni, suffers from poor cyclability. The formation of Zn dendrites upon cycling is the key limiting step. We report a systematic study of the influence of pulsed electroplating protocols on the formation of Zn dendrites and in turn on strategies to completely prevent Zn dendrite formation. Because of the large number of variables in electroplating protocols, a scanning droplet cell technique was adapted as a high-throughput methodology in which a descriptor of the surface roughness can be in situ derived by means of electrochemical impedance spectroscopy. Upon optimizing the electroplating protocol by controlling nucleation, zincate ion depletion, and zincate ion diffusion, scanning electron microscopy and atomic force microscopy confirmed the growth of uniform and homogenous Zn deposits with a complete prevention of dendrite growth. The implementation of pulsed electroplating as the charging protocol for commercially available Ni–Zn batteries leads to substantially prolonged cyclability demonstrating the benefits of pulsed charging in Zn metal-based batteries.
    Palabras clave
    Zinc
    Dendrites
    Batteries
    Electrodeposition
    High-throughput approach
    Materia
    Química
    Chemistry
    Química analítica
    Chemistry, Analytic
    URI
    https://hdl.handle.net/10259/11378
    Versión del editor
    https://doi.org/10.1021/acsami.7b01705
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    Garcia-am&i_2017.pdf
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