Features of forming a low-temperature cubic Li7La3Zr2O12 film by tape casting

Q4 Materials Science Chimica Techno Acta Pub Date : 2023-11-21 DOI:10.15826/chimtech.2023.10.4.09
E. Lyalin, Larisa Pershina, Evgeniy a Il’ina, Konstantin Druzhinin, Semen Belyakov
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Abstract

Currently, interest to lithium and lithium-ion all-solid-state power sources is rapidly growing all over the world. However, several issues should be addressed before all-solid-state batteries production: high resistance values of the solid electrolyte membrane and poor contact between electrolyte and electrode materials. The transition to thin-film technologies is one of the promising ways to solve these problems. Tape casting can be proposed to obtain thin-film solid electrolytes. In this research, the features of the structure formation, morphology and lithium-ion conductivity of Li7La3Zr2O12 films were investigated. Li7La3Zr2O12 films with the thickness of 35 µm were obtained by tape casting on Ni substrate. The influence of organic components’ content on homogeneous coatings formation was established. Heat treatment conditions for dried films were chosen based on differential scanning calorimetry and optical dilatometry. Phase change from tetragonal to low-temperature cubic modification occurs after annealing the Li7La3Zr2O12 films at 700 °C and higher. The annealed Li7La3Zr2O12 films have developed surface, which can lead to improved contact between the solid electrolyte and an electrode in an electrochemical cell. Li7La3Zr2O12 films annealed at 800 °C have the highest lithium-ion conductivity values (2.5·10–7 and 1.5·10–5 S·cm–1 at 90 and 215 °С, respectively). The technology of Li7La3Zr2O12 films formation with the thickness of ~23 µm by tape casting was developed.
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通过胶带浇铸形成低温立方 Li7La3Zr2O12 薄膜的特点
目前,全世界对锂和锂离子全固态电源的兴趣正在迅速增长。然而,在生产全固态电池之前,有几个问题需要解决:固体电解质膜的电阻值过高以及电解质和电极材料之间的接触不良。向薄膜技术过渡是解决这些问题的可行方法之一。为获得薄膜固态电解质,可建议采用带式浇注法。本研究考察了 Li7La3Zr2O12 薄膜的结构形成、形貌和锂离子电导率特征。在镍基底上通过胶带浇铸获得了厚度为 35 µm 的 Li7La3Zr2O12 薄膜。确定了有机成分含量对均匀涂层形成的影响。根据差示扫描量热法和光学扩张仪选择了干燥薄膜的热处理条件。在 700 °C 或更高温度下退火后,Li7La3Zr2O12 薄膜发生了从四方到低温立方的相变。退火后的 Li7La3Zr2O12 薄膜具有发达的表面,可改善电化学电池中固体电解质与电极之间的接触。在 800 °C 下退火的 Li7La3Zr2O12 薄膜具有最高的锂离子电导率值(在 90 °С 和 215 °С 下分别为 2.5-10-7 和 1.5-10-5 S-cm-1)。通过胶带浇铸法形成厚度约为 23 µm 的 Li7La3Zr2O12 薄膜的技术已经开发成功。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
期刊最新文献
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