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ShanghaiTech University Knowledge Management System
Investigation of Electrochemical Stability of Ald Grown Li3PO4 Thin Films and Its Application in High-Voltage PEO-based All-Solid-State Lithium Batteries | |
2023 | |
发表期刊 | ADVANCED SUSTAINABLE SYSTEMS (IF:6.5[JCR-2023],6.6[5-Year]) |
ISSN | 2366-7486 |
EISSN | 2366-7486 |
发表状态 | 已发表 |
DOI | 10.1002/adsu.202300392 |
摘要 | In lithium batteries, the interface between electrolytes and electrodes with optimized structural stability and fast charge transfer kinetics plays a pivotal role in achieving overall cycle and rate performance. Introducing a uniform interfacial layer that conducts Li+ ions while insulating electrons, through atomic layer deposition (ALD) of lithium compounds, has shown promise in facilitating lithium ion transport and enhancing interface stability. However, synthesizing lithium compounds with both robust chemical stability and a broad electrochemical window using ALD poses challenges due to the difficulty of obtaining desired products under specific ALD reaction conditions. In this study, this challenge by investigating Li3PO4 is addressed, a compound grown by ALD that exhibits a noteworthy property: the in situ formation of a more stable LiPO3 phase under high applied voltage. The LiPO3 phase possesses an extended theoretical stability window (LiPO3: 2.48-5.00 V versus Li3PO4: 0.69-4.21 V), and its emergence substantially enhances the electrochemical performance of all-solid-state lithium batteries based on polyethylene oxide (PEO). This work not only presents experimental evidence of the in situ transformation of the interfacial layer but also offers a pragmatic approach to realizing all-solid-state lithium batteries with elevated energy density, emphasizing safety and stability considerations. © 2023 Wiley-VCH GmbH. |
关键词 | Charge transfer Charging (batteries) Chemical stability Lithium compounds Lithium-ion batteries Polyelectrolytes Polyethylene oxides Solid electrolytes All-solid-state lithium battery Atomic-layer deposition Electrochemical stabilities High-voltages Interfacial layer ITS applications Solid polymer electrolytes Structural stabilities Surface engineering Thin-films |
收录类别 | EI |
语种 | 英语 |
出版者 | John Wiley and Sons Inc |
EI入藏号 | 20234314949720 |
EI主题词 | Atomic layer deposition |
EI分类号 | 702.1.2 Secondary Batteries ; 801 Chemistry ; 802.2 Chemical Reactions ; 803 Chemical Agents and Basic Industrial Chemicals ; 813.1 Coating Techniques ; 815.1.1 Organic Polymers ; 817.1 Polymer Products ; 933.1.2 Crystal Growth |
原始文献类型 | Article in Press |
引用统计 | 正在获取...
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文献类型 | 期刊论文 |
条目标识符 | https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/345791 |
专题 | 物质科学与技术学院 物质科学与技术学院_硕士生 物质科学与技术学院_博士生 物质科学与技术学院_PI研究组_谢琎组 |
通讯作者 | Xie, Jin |
作者单位 | 1.School of Physical Science and Technology, ShanghaiTech University, Shanghai; 201210, China; 2.School of Microelectronics, Southern University of Science and Technology, Shenzhen; 518055, China; 3.State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai; 200050, China; 4.Shanghai Key Laboratory of High-resolution Electron Microscopy, Shanghai Tech University, Shanghai; 201210, China; 5.21C Innovation Laboratory, Contemporary Amperex Technology Ltd. (21C LAB), Fujian; 352100, China |
第一作者单位 | 物质科学与技术学院 |
通讯作者单位 | 物质科学与技术学院; 上海科技大学 |
第一作者的第一单位 | 物质科学与技术学院 |
推荐引用方式 GB/T 7714 | Cai, Xincan,Bao, Wenda,Zhao, Lianqi,et al. Investigation of Electrochemical Stability of Ald Grown Li3PO4 Thin Films and Its Application in High-Voltage PEO-based All-Solid-State Lithium Batteries[J]. ADVANCED SUSTAINABLE SYSTEMS,2023. |
APA | Cai, Xincan.,Bao, Wenda.,Zhao, Lianqi.,Zuo, Yuqing.,Zhao, Haojie.,...&Xie, Jin.(2023).Investigation of Electrochemical Stability of Ald Grown Li3PO4 Thin Films and Its Application in High-Voltage PEO-based All-Solid-State Lithium Batteries.ADVANCED SUSTAINABLE SYSTEMS. |
MLA | Cai, Xincan,et al."Investigation of Electrochemical Stability of Ald Grown Li3PO4 Thin Films and Its Application in High-Voltage PEO-based All-Solid-State Lithium Batteries".ADVANCED SUSTAINABLE SYSTEMS (2023). |
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