粒径
电解质
碳纤维
锂(药物)
材料科学
电化学
离子电导率
化学工程
同种类的
电导率
矿物学
化学
复合材料
工程类
复合数
数学
物理化学
内分泌学
组合数学
医学
电极
作者
Daniele Campanella,Giovanni Bertoni,Wen Zhu,Michel L. Trudeau,Gabriel Girard,Sylvio Savoie,Daniel Clément,Abdelbast Guerfi,Ashok K. Vijh,Chandramohan George,Daniel Bélanger,Andrea Paolella
标识
DOI:10.1016/j.cej.2023.141349
摘要
In recent years, solid electrolytes have become an enticing alternative to liquid electrolytes in lithium based batteries. However, the high synthesis temperatures and difficult optimization of solid-state electrolytes are a significant drawback in a high-scale application. In this work, we demonstrate that the synthesis process of garnet-based Li7La3Zr2O12 (LLZO) electrolyte can be accelerated while reducing the formation temperature of cubic LLZO to about 720 °C from a standard temperature of 780 °C by supplementing the process with a carbon additive. These carbon-rich LLZO samples have a homogeneous particle distribution with a decreased average size, which is influenced by the type of carbon additive itself. The materials with high carbon content show an improved densification after hot-pressing at a low temperature of 800 °C, which is reflected in their electrochemical performance, since LLZO sample with 10% of DENKA carbon additive shows a total ionic conductivity of 5.95 × 10−5 S cm−1, about 40% higher than the one of carbon-free LLZO (3.53 × 10−5 S cm−1).
科研通智能强力驱动
Strongly Powered by AbleSci AI