Literature DB >> 29397748

From Microparticles to Nanowires and Back: Radical Transformations in Plated Li Metal Morphology Revealed via in Situ Scanning Electron Microscopy.

Alexander Yulaev1,2,3, Vladimir Oleshko4, Paul Haney1, Jialin Liu5, Yue Qi5, A Alec Talin6, Marina S Leite2,7, Andrei Kolmakov1.   

Abstract

Li metal is the preferred anode material for all-solid-state Li batteries. However, a stable plating and stripping of Li metal at the anode-solid electrolyte interface remains a significant challenge particularly at practically feasible current densities. This problem usually relates to high and/or inhomogeneous Li-electrode-electrolyte interfacial impedance and formation and growth of high-aspect-ratio dendritic Li deposits at the electrode-electrolyte interface, which eventually shunt the battery. To better understand details of Li metal plating, we use operando electron microscopy and Auger spectroscopy to probe nucleation, growth, and stripping of Li metal during cycling of a model solid-state Li battery as a function of current density and oxygen pressure. We find a linear correlation between the nucleation density of Li clusters and the charging rate in an ultrahigh vacuum, which agrees with a classical nucleation and growth model. Moreover, the trace amount of oxidizing gas (≈10-6 Pa of O2) promotes the Li growth in a form of nanowires due to a fine balance between the ion current density and a growth rate of a thin lithium-oxide shell on the surface of the metallic Li. Interestingly, increasing the partial pressure of O2 to 10-5 Pa resumes Li plating in a form of 3D particles. Our results demonstrate the importance of trace amounts of preexisting or ambient oxidizing species on lithiation processes in solid-state batteries.

Entities:  

Keywords:  In situ; all-solid-state batteries; carbon anode; lithium plating; scanning electron microscopy

Year:  2018        PMID: 29397748     DOI: 10.1021/acs.nanolett.7b04518

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  1 in total

1.  Engineering stable interfaces for three-dimensional lithium metal anodes.

Authors:  Jin Xie; Jiangyan Wang; Hye Ryoung Lee; Kai Yan; Yuzhang Li; Feifei Shi; William Huang; Allen Pei; Gilbert Chen; Ram Subbaraman; Jake Christensen; Yi Cui
Journal:  Sci Adv       Date:  2018-07-27       Impact factor: 14.136

  1 in total

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