The lithium ion-conductive solid electrolyte in the oxide systems of Li2O-TiO2-SiO2-P2O5 and Li2O-TiO2-Al2O3-P2O5 was prepared by solid-state reaction. The electrolyte pellets by cold-pressing method is 13 mm in diame...The lithium ion-conductive solid electrolyte in the oxide systems of Li2O-TiO2-SiO2-P2O5 and Li2O-TiO2-Al2O3-P2O5 was prepared by solid-state reaction. The electrolyte pellets by cold-pressing method is 13 mm in diameter, about 1 mm in thickness. Phase identification and surface morphology of the products were carried out by X-ray diffraction and scanning electron microscopy. Ionic conductivity of the pellets was investigated through AC impedance. The results show that adulterate other cations can improve the ionic conductivity of the solid electrolyte. The maximum ionic conductivity in the samples is 9.912 × 10-4 S·cm-1 in the Li2O-TiO2-SiO2-P2O5 system.展开更多
通过固相法制备了1.5Li2O-P2O5-xTiO2(x=0.1、0.2…0.9)玻璃以及微晶玻璃快离子导体。对制备的玻璃以及微晶玻璃分别进行了交流阻抗和充放电电化学性能等测试。结果表明,1.5Li2O-P2O5-xTiO2微晶玻璃导电率比对应的玻璃导电率要高,最高为...通过固相法制备了1.5Li2O-P2O5-xTiO2(x=0.1、0.2…0.9)玻璃以及微晶玻璃快离子导体。对制备的玻璃以及微晶玻璃分别进行了交流阻抗和充放电电化学性能等测试。结果表明,1.5Li2O-P2O5-xTiO2微晶玻璃导电率比对应的玻璃导电率要高,最高为1.77×10-6S/cm,二者的导电率都随TiO2含量的增加而增加,而且1.5Li2O-P2O5-xTiO2微晶玻璃作为锂离子电池负极充放电性能比对应的玻璃充放电性能要好,但是二者总体充放电性能不佳,最高首次放电比容量为283 mAh g-1。展开更多
文摘The lithium ion-conductive solid electrolyte in the oxide systems of Li2O-TiO2-SiO2-P2O5 and Li2O-TiO2-Al2O3-P2O5 was prepared by solid-state reaction. The electrolyte pellets by cold-pressing method is 13 mm in diameter, about 1 mm in thickness. Phase identification and surface morphology of the products were carried out by X-ray diffraction and scanning electron microscopy. Ionic conductivity of the pellets was investigated through AC impedance. The results show that adulterate other cations can improve the ionic conductivity of the solid electrolyte. The maximum ionic conductivity in the samples is 9.912 × 10-4 S·cm-1 in the Li2O-TiO2-SiO2-P2O5 system.
文摘通过固相法制备了1.5Li2O-P2O5-xTiO2(x=0.1、0.2…0.9)玻璃以及微晶玻璃快离子导体。对制备的玻璃以及微晶玻璃分别进行了交流阻抗和充放电电化学性能等测试。结果表明,1.5Li2O-P2O5-xTiO2微晶玻璃导电率比对应的玻璃导电率要高,最高为1.77×10-6S/cm,二者的导电率都随TiO2含量的增加而增加,而且1.5Li2O-P2O5-xTiO2微晶玻璃作为锂离子电池负极充放电性能比对应的玻璃充放电性能要好,但是二者总体充放电性能不佳,最高首次放电比容量为283 mAh g-1。