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Lithium-Metal Growth Kinetics on LLZO Garnet-Type Solid Electrolytes

机译:LLZO石榴石型固体电解质上锂金属的生长动力学

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摘要

Li_7La_3Zr_2O_12 (LLZO)-based garnet materials are recently being investigated as suitable electrolytes for solid-state batteries with lithium-metal electrodes. Unfortunately, lithium-metal penetration through polycrystalline garnet-type electrolytes limits the electric current density during cell charging. In this study, we introduce an electrochemical operando approach that is well suited to get insights into the early stage of lithium-metal penetration that was yet only accessible with very elaborate neutron measurements. Combined with in situ as well as ex situ electron microscopic techniques, we investigate the morphological instability of the lithium-metal anode on garnet-type solid electrolytes under cathodic load and demonstrate the inter-relationship between microkinetic aspects and lithium-penetration susceptibility.
机译:最近研究了基于Li_7La_3Zr_2O_12(LLZO)的石榴石材料,将其作为具有锂金属电极的固态电池的合适电解质。不幸的是,锂金属穿过多晶石榴石型电解质的渗透限制了电池充电过程中的电流密度。在这项研究中,我们介绍了一种电化学操作方法,该方法非常适合于洞悉锂金属渗透的早期阶段,而这只有通过非常精细的中子测量才能获得。结合原位和非原位电子显微镜技术,我们研究了在阴极负载下石榴石型固体电解质上锂金属阳极的形态不稳定性,并证明了微观动力学方面与锂渗透敏感性之间的相互关系。

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  • 来源
    《Joule》 |2019年第8期|2030-2049|共20页
  • 作者单位

    Institute of Physical Chemistry Justus-Liebig-University Giessen Heinrich-Buff-Ring 17 D-35392 Giessen Germany;

    Institute of Physical Chemistry Justus-Liebig-University Giessen Heinrich-Buff-Ring 17 D-35392 Giessen Germany lsabellenhutte Heusler GmbH & Co. KG Eibacher Weg 3-5 D-35683 Dillenburg Germany;

    Institute of Physical Chemistry Justus-Liebig-University Giessen Heinrich-Buff-Ring 17 D-35392 Giessen Germany Center for Materials Research (LaMa) Justus-Liebig-University Giessen Heinrich-Buff-Ring 16 D-35392 Giessen Germany;

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