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Fast ion conducting phosphate glasses and glass ceramic composites: Promising materials for solid state batteries

机译:快速离子传导磷酸盐玻璃和玻璃陶瓷复合材料:固态电池的有前途的材料

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摘要

Fast ion conducting (FIC) phosphate glasses and glass ceramic composites have gained considerable importance due to their potential applications in the fabrication of solid-state batteries and other electrochemical devices. We, therefore, present an overview on various types of FIC glasses and glass ceramic composites. Silver phosphate glasses doped with different weight percent of lithium chloride (1, 5, 10 and 15 wt.%) were synthesized by melt quenching technique. The Ag _2O-P _2O _5-(15 wt.%) LiCl glass exhibited the maximum electrical conductivity (σ = 8.91 × 10 ~(- 5) S cm ~(- 1) at room temperature and 4.16 × 10 ~(- 3) S cm ~(- 1) at 200 °C). Using this glass as an amorphous host material, glass-ceramic composites of Ag _2O-P _2O _5-(15 wt.%) LiCl:xAl _2O _3 (x = 5-50 wt.%) were prepared. The ionic transference number, electrical conductivity, ionic mobility and carrier ion concentration of the synthesized samples were measured. Ag _2O-P _2O _5-(15 wt.%) LiCl:(25 wt.%) Al _2O _3 composite system exhibited the maximum σ value (σ = 3.32 × 10 ~(- 4) S cm ~(- 1) at room temperature and 2.88 × 10 ~(- 2) S cm ~(- 1) at 200 °C). Solid-state batteries using undoped Ag _2O-P _2O _5 glass, Ag _2O-P _2O _5-(15 wt.%) LiCl glass and glass ceramic composite containing 25 wt.% Al _2O _3 as electrolytes were fabricated. The open circuit voltage (OCV) values and discharge time of these cells were measured and compared. It is found that the glass ceramic composites show enhanced ionic conduction, better OCV value and discharge characteristics.
机译:快速离子传导(FIC)磷酸盐玻璃和玻璃陶瓷复合材料由于其在固态电池和其他电化学设备的制造中的潜在应用而获得了相当大的重视。因此,我们概述了各种类型的FIC玻璃和玻璃陶瓷复合材料。通过熔融淬火技术合成了掺杂有不同重量百分比的氯化锂(1、5、10、15和15 wt。%)的磷酸银玻璃。 Ag _2O-P _2O _5-(15 wt。%)LiCl玻璃在室温下显示最大电导率(σ= 8.91×10〜(-5)S cm〜(-1)和4.16×10〜(-3 )S cm〜(-1在200°C时)。使用该玻璃作为非晶基质材料,制备了Ag _2O-P _2O _5-(15重量%)LiCl∶xAl _2O _3(x = 5-50重量%)的玻璃-陶瓷复合材料。测量了合成样品的离子转移数,电导率,离子迁移率和载体离子浓度。 Ag _2O-P _2O _5-(15 wt。%)LiCl:(25 wt。%)Al _2O _3复合体系表现出最大σ值(σ= 3.32×10〜(-4)S cm〜(-1)室温和200°C下2.88×10〜(-2)S cm〜(-1))。制造了使用未掺杂的Ag _2O-P _2O _5玻璃,Ag _2O-P _2O _5-(15 wt。%)LiCl玻璃和包含25 wt。%的Al _2O _3作为电解质的玻璃陶瓷复合材料的固态电池。测量并比较这些电池的开路电压(OCV)值和放电时间。发现玻璃陶瓷复合材料显示出增强的离子传导性,更好的OCV值和放电特性。

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