Co-Hydrothermal Carbonization of Goose Feather and Pine Sawdust: A Promising Strategy for Disposal of Sports Waste and the Robust Improvement of the Supercapacitor Characteristics of Pyrolytic Nanoporous Carbon.

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Title: Co-Hydrothermal Carbonization of Goose Feather and Pine Sawdust: A Promising Strategy for Disposal of Sports Waste and the Robust Improvement of the Supercapacitor Characteristics of Pyrolytic Nanoporous Carbon.
Authors: Ma, Tingyu1,2 (AUTHOR) 17539120574@163.com, Wang, Jieni1,3 (AUTHOR) jieniwang@henu.edu.cn, Han, Xiaobo1,3 (AUTHOR) 2138030016@henu.edu.cn, Zhang, Chuanbing3 (AUTHOR), Xu, Yahui3 (AUTHOR), Cao, Leichang1,3 (AUTHOR) clch666@henu.edu.cn, Zhao, Shuguang3 (AUTHOR) clch666@henu.edu.cn, Zhang, Jinglai1 (AUTHOR), Zhang, Shicheng4 (AUTHOR) zhangsc@fudan.edu.cn
Source: Molecules. Jan2025, Vol. 30 Issue 1, p26. 16p.
Database: Academic Search Ultimate
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ISSN:14203049
DOI:10.3390/molecules30010026