材料科学
断裂韧性
电导率
晶界
离子电导率
复合材料
锆
电阻率和电导率
弹性模量
锂(药物)
活化能
分析化学(期刊)
化学
冶金
微观结构
电极
电气工程
工程类
内分泌学
物理化学
医学
有机化学
电解质
色谱法
作者
Sheila Smith,Travis Thompson,Jeff Sakamoto,Jan L. Allen,David R. Baker,J. Wolfenstine
标识
DOI:10.1016/j.ssi.2016.11.032
摘要
The elastic modulus, fracture toughness, ionic conductivity, Li and water stability of dense (~ 97%) fine-grain (~ 10 μm) Li1.2Zr1.9Sr0.1(PO4)3 (LZSP) consolidated by reactive hot-pressing was investigated. Low values of elastic modulus (25.2 and 40.9 GPa), fracture toughness (0.29 and 0.37 MPa-m1/2), total conductivity (2.1 × 10− 5 S/cm) at room temperature were exhibited as a result of the presence of microcracks formed during cooling from the hot-pressing temperature. The lattice conductivity of LZSP is 0.85 × 10− 4 S/cm with an activation energy for bulk conductivity of 0.29 eV. The results of Li/LZSP/Li cell impedance as a function of time and surface examination suggest that LZSP is not stable against metallic lithium. The results of the water stability test suggest that LZSP is a possible membrane for use in aqueous Li-Air cells. The results of this study reveal for the case of lithium zirconium phosphates are as follows: 1] a small grain size is required to prevent microcracking to avoid a reduction in total conductivity and mechanical properties and 2] even though they do not contain a transition metal cation they are not stable against Li at room temperature.
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