Ultrathin cellulosic gel electrolytes with a gradient hydropenic interface for stable, high-energy and flexible zinc batteries

Energy Environ. Sci., 2025, Advance ArticleDOI: 10.1039/D5EE00158G, Paper Open Access &nbsp This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.Jichao Zhai, Wang Zhao, Lei Wang, Jianbo Shuai, Ruwei Chen, Wenjiao Ge, Yu Zong, Guanjie He, Xiaohui WangUltrathin cellulose-based electrolytes (DCG, 10 μm) with a gradient hydropenic interface were designed to minimize side reactions and guide (002) textured deposition. DCG enhanced flexible Zn batteries to 222 W h kg−1 and 214.3 W h L−1.To cite this article before page numbers are assigned, use the DOI form of citation above.The content of this RSS Feed (c) The Royal Society of Chemistry

Mar 27, 2025 - 12:21
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Ultrathin cellulosic gel electrolytes with a gradient hydropenic interface for stable, high-energy and flexible zinc batteries

Energy Environ. Sci., 2025, Advance Article
DOI: 10.1039/D5EE00158G, Paper
Open Access Open Access
Creative Commons Licence  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Jichao Zhai, Wang Zhao, Lei Wang, Jianbo Shuai, Ruwei Chen, Wenjiao Ge, Yu Zong, Guanjie He, Xiaohui Wang
Ultrathin cellulose-based electrolytes (DCG, 10 μm) with a gradient hydropenic interface were designed to minimize side reactions and guide (002) textured deposition. DCG enhanced flexible Zn batteries to 222 W h kg−1 and 214.3 W h L−1.
To cite this article before page numbers are assigned, use the DOI form of citation above.
The content of this RSS Feed (c) The Royal Society of Chemistry