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首页> 外文期刊>Advanced energy materials >Constructing Multifunctional Interphase between Li_(1.4)Al_(0.4)Ti_(1.6)(PO_4)_3 and Li Metal by Magnetron Sputtering for Highly Stable Solid-State Lithium Metal Batteries
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Constructing Multifunctional Interphase between Li_(1.4)Al_(0.4)Ti_(1.6)(PO_4)_3 and Li Metal by Magnetron Sputtering for Highly Stable Solid-State Lithium Metal Batteries

机译:磁控溅射在Li_(1.4)Al_(0.4)Ti_(1.6)(PO_4)_3和Li Metal之间建立多功能相态,以制备高度稳定的固态锂金属电池

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摘要

Due to high ionic conductivity and low cost, Li1.4Al0.4Ti1.6(PO4)(3) (LATP) has emerged as a promising solid-state electrolyte for next-generation lithium (Li) metal solid-state batterie with high safety performance and energy density. However, the extremely high impedance and surface instability of LATP with Li metal retard its practical application. Herein, a novel method is proposed to construct an ultrathin ZnO layer that is tightly coated on the LATP pellets, surface (ZnO@LATP) via magnetron sputtering, which in situ reacts with Li to form a low electronic conductivity and multifunctional solid electrolyte interphase (SEI). The formed SEI can not only effectively lower the interfacial resistance, but also overcome the side reactions of LATP with the Li metal anode and suppress the Li dendrite growth. Specifically, the interface resistance decreases from 80 554 to 353 omega and the overpotential reduces from 1 V to 20 mV. As a result, the Li/ZnO@LATP@ZnO/Li symmetric batteries can stably cycle for more than 2000 h without short circuit at 0.05 mA cm(-2) and Li/ZnO@LATP/LiFePO4 batteries show excellent cycle stability for 200 cycles at 0.1 C. This work highlights the significance of multifunctional interphase between LATP and Li metal for improvement of interfacial impedance and instability.
机译:由于高离子电导率和低成本,Li1.4Al0.4Ti1.6(PO4)(3)(LATP)成为具有高安全性的下一代锂(Li)金属固态电池的有前途的固态电解质性能和能量密度。但是,LATP与锂金属的极高阻抗和表面不稳定性阻碍了其实际应用。本文提出了一种新颖的方法来构造超薄ZnO层,该层通过磁控溅射法紧密涂覆在LATP丸粒的表面(ZnO @ LATP)上,并与Li原位反应形成低电子电导率和多功能固体电解质界面( SEI)。形成的SEI不仅可以有效降低界面电阻,而且可以克服LATP与锂金属阳极的副反应,抑制锂枝晶的生长。具体而言,界面电阻从80 554降低至353Ω,过电势从1 V降低至20 mV。结果,Li / ZnO @ LATP @ ZnO / Li对称电池可以稳定地循环2000小时以上,而在0.05 mA cm(-2)时不会发生短路,并且Li / ZnO @ LATP / LiFePO4电池在200毫安时具有出色的循环稳定性循环在0.1 C下进行。这项工作突出了LATP和Li金属之间多功能界面对于改善界面阻抗和不稳定性的重要性。

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