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Development of stable and conductive interface between garnet structured solid electrolyte and lithium metal anode for high performance solid-state battery

机译:高性能固态电池石榴石结构固体电解质和锂金属阳极稳定导电界面的研制

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Dense garnet structured solid electrolytes exhibit great promise for lithium metal batteries owing to its high lithium ion conductivity, good mechanical and electrochemical properties. However, the rigid interfacial contact between garnet structured electrolyte and electrode stymie their practical application. In this study, we propose an effective strategy to improve the lithium wettability of Li6.28Al0.24La3Zr2O12 (LLZA) with graphite (G) or lithium niobate [LiNbO3 (LNbO)] buffer layer. Our experimental investigation reveals a significant decrease in metallic lithium (Li) - LLZA interface resistance from 1078 Omega cm(2) to 91 Omega cm(2) and 58 Omega cm(2) by the application of a thin LiNbO3/graphite buffer layer, respectively. In addition, Li vertical bar G-LLZA-G vertical bar Li cell exhibits a stable lithium stripping/platting performance with small voltage hysteresis and endures a critical current density up to 750 mu A cm(-2) in comparison to Li vertical bar LNbO-LLZA-LNbO vertical bar Li and its counterpart (Li vertical bar LLZA vertical bar Li). As a proof-of-concept, we demonstrate a stable cycling performance of quasi-solid-state battery with surface modified LLZA (G-LLZA) as solid electrolyte, lithium metal as anode and LiNi0.33Mn0.33Co0.33O2 (NMC) as cathode with an initial discharge capacity of 162 mA h g(-1) (50 mA cm(-2)) and 149 mA h g(-1) (100 mA cm(-2)) at room temperature (25 degrees C). (C) 2019 Elsevier Ltd. All rights reserved.
机译:密集的石榴石结构固体电解质由于其高锂离子传导性,良好的机械和电化学性能而表现出锂金属电池的巨大希望。然而,石榴石结构电解质与电极stymie之间的刚性界面接触它们的实际应用。在这项研究中,我们提出了一种有效的策略,以改善Li6.28Al0.24LA3ZR2O12(LLZA)的锂润湿性,用石墨(G)或铌酸锂[LINBO3(LNBO)缓冲层。我们的实验研究显示通过施用薄的LiNBO3 /石墨缓冲层,从1078ωcm(2)至91ωcm(2)和58ωcm(2)中的金属锂(Li) - LLZA接口电阻显着降低,分别。此外,Li垂直条G-LLZA-G垂直条Li电池具有稳定的锂剥离/平台性能,具有小的电压滞后,并且与Li垂直条LNBO相比,凸起高达750μm(-2)的临界电流密度-llza-lnbo垂直条李及其对应(Li垂直条LLZA垂直条LI)。作为概念验证,我们证明了用表面改性的LLZA(G-LLZA)的准固态电池的稳定循环性能,作为固体电解质,锂金属作为阳极和LINI0.33MN0.33CO0.33O2(NMC)。初始放电容量为162 mA Hg(-1)(50mA cm(-2))和149 mA Hg(-1)(100mA cm(-2))的阴极(25℃)。 (c)2019 Elsevier Ltd.保留所有权利。

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