A free-standing lithium phosphorus oxynitride thin film electrolyte promotes uniformly dense lithium metal deposition with no external pressure

被引:0
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作者
Diyi Cheng
Thomas Wynn
Bingyu Lu
Maxwell Marple
Bing Han
Ryosuke Shimizu
Bhagath Sreenarayanan
Jeffery Bickel
Peter Hosemann
Yangyuchen Yang
Han Nguyen
Weikang Li
Guomin Zhu
Minghao Zhang
Ying Shirley Meng
机构
[1] University of California San Diego,Materials Science and Engineering Program
[2] University of California San Diego,Department of NanoEngineering
[3] Lawrence Livermore National Laboratory,Physical and Life Science Directorate
[4] University of California Berkeley,Nuclear Engineering Department
[5] University of Chicago,Pritzker School of Molecular Engineering
来源
Nature Nanotechnology | 2023年 / 18卷
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摘要
Lithium phosphorus oxynitride (LiPON) is an amorphous solid electrolyte that has been extensively studied over the last three decades. Despite the promise of pairing it with various electrode materials, LiPON’s rigidity and air sensitivity set limitations to understanding its intrinsic properties. Here we report a methodology to synthesize LiPON in a free-standing form that manifests remarkable flexibility and a Young’s modulus of ∼33 GPa. We use solid-state nuclear magnetic resonance and differential scanning calorimetry to quantitatively reveal the chemistry of the Li/LiPON interface and the presence of a well-defined LiPON glass-transition temperature of 207 °C. Combining interfacial stress and a gold seeding layer, our free-standing LiPON shows a uniformly dense deposition of lithium metal without the aid of external pressure. This free-standing LiPON film offers opportunities to study fundamental properties of LiPON for interface engineering for solid-state batteries.
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页码:1448 / 1455
页数:7
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