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Microwave Crystallization of Lithium Aluminum Germanium Phosphate Solid-State Electrolyte

机译:磷酸锂铝锗固态电解质的微波结晶

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摘要

Lithium aluminum germanium phosphate (LAGP) glass-ceramics are considered as promising solid-state electrolytes for Li-ion batteries. LAGP glass was prepared via the regular conventional melt-quenching method. Thermal, chemical analyses and X-ray diffraction (XRD) were performed to characterize the prepared glass. The crystallization of the prepared LAGP glass was done using conventional heating and high frequency microwave (MW) processing. Thirty GHz microwave (MW) processing setup were used to convert the prepared LAGP glass into glass-ceramics and compared with the conventionally crystallized LAGP glass-ceramics that were heat-treated in an electric conventional furnace. The ionic conductivities of the LAGP samples obtained from the two different routes were measured using impedance spectroscopy. These samples were also characterized using XRD and scanning electron microscopy (SEM). Microwave processing was successfully used to crystallize LAGP glass into glass-ceramic without the aid of susceptors. The MW treated sample showed higher total, grains and grain boundary ionic conductivities values, lower activation energy and relatively larger-grained microstructure with less porosity compared to the corresponding conventionally treated sample at the same optimized heat-treatment conditions. The enhanced total, grains and grain boundary ionic conductivities values along with the reduced activation energy that were observed in the MW treated sample was considered as an experimental evidence for the existence of the microwave effect in LAGP crystallization process. MW processing is a promising candidate technology for the production of solid-state electrolytes for Li-ion battery.
机译:磷酸锂铝锗(LAGP)玻璃陶瓷被认为是用于锂离子电池的有前途的固态电解质。 LAGP玻璃是通过常规的常规熔融淬火方法制备的。进行热,化学分析和X射线衍射(XRD)以表征所制备的玻璃。使用常规加热和高频微波(MW)处理完成制得的LAGP玻璃的结晶。使用三十GHz微波(MW)处理设备将制得的LAGP玻璃转换成玻璃陶瓷,并与在常规电炉中进行热处理的传统结晶的LAGP玻璃陶瓷进行比较。使用阻抗谱法测量了从两种不同途径获得的LAGP样品的离子电导率。还使用XRD和扫描电子显微镜(SEM)对这些样品进行了表征。无需基座,微波处理已成功用于将LAGP玻璃结晶成玻璃陶瓷。在相同的优化热处理条件下,与相应的常规处理样品相比,经MW处理的样品显示出更高的总晶粒,晶界和晶界离子电导率值,较低的活化能和相对较大的晶粒组织,且孔隙率更低。在MW处理的样品中观察到的增加的总,晶粒和晶界离子电导率值以及降低的活化能被认为是LAGP结晶过程中存在微波效应的实验证据。 MW处理是生产锂离子电池固态电解质的有前途的候选技术。

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