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Crystallization behavior of Li1+xAlxGe2-x(PO4)(3) glass-ceramics: Effect of composition and thermal treatment

机译:Li1 + XalxGe2-X(PO4)(3)玻璃陶瓷的结晶行为:组成和热处理的影响

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摘要

Lithium aluminum germanium phosphate (LAGP) glass-ceramics are promising solid electrolytes for all solid-state lithium ion batteries and other electrochemical applications. LAGP glass-ceramics (Li1+xAlxGe2-x(PO4)(3), were synthesized using a two-step heat treatment based on characteristic temperatures from Differential scanning calorimeter (DSC) analysis. X-ray diffraction (XRD) and scanning electron microscope (SEM) were used to characterize the crystal phases and their morphologies. Our results show that high purity ion conductive phase can be obtained for the compositions with P/Ge = 2.3 and 2.4 by a two-step heat treatment, instead of the commonly adopted single step heat treatment for composition with P/Ge = 2.0. Electrochemical impedance spectroscopy (EIS) measurements show that T-g + 60%Delta T (Delta T = T-c-T-g) is the optimal nucleation temperature to obtain high ionic conductivity. Crystallization energies were calculated from the modified Kissinger equation based on DSC measurements and it was concluded that the crystal phase form mainly through internal nucleation. We have found in this paper that, by using a two-step heat treatment, high phase purity LAGP glass-ceramics with lower GeO2 concentration can be obtained to achieve high ionic conductivity.
机译:磷酸锂锗锗(LAGP)玻璃陶瓷是所有固态锂离子电池和其他电化学应用的固体电解质。 LAGP玻璃陶瓷(LI1 + XALXGE2-X(PO4)(3),使用基于差示扫描量热仪(DSC)分析的特征温度的两步热处理合成。X射线衍射(XRD)和扫描电子显微镜(SEM)用于表征晶体阶段及其形态。我们的结果表明,通过双步热处理,可以获得具有P / Ge = 2.3和2.4的组合物的高纯度离子导电相,而不是常用的用P / Ge = 2.0的组合物的单步热处理。电化学阻抗光谱(EIS)测量表明,Tg + 60%ΔT(Delta T = TctG)是获得高离子电导率的最佳成核温度。从中计算结晶能量基于DSC测量的改进的基辛格方程,得出结论是晶相的主要通过内部成核形式。我们在本文中发现,通过使用两步热处理,高PHA可以获得具有较低GeO2浓度的Se纯度Lagp玻璃陶瓷以实现高离子电导率。

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