首页|期刊导航|Journal of Materiomics|Effective binding sufficiently-small SiO_(2) nanoparticles within carbon nanosheets framework enables a high-performing and durable anode for lithium-ion batteries
Effective binding sufficiently-small SiO_(2) nanoparticles within carbon nanosheets framework enables a high-performing and durable anode for lithium-ion batteries
Zhefei Sun Zhiwen Zhang Shenghui Zhou Weicheng Liu Jianhui Liu Quanzhi Yin Jianhai Pan Xiaoyu Wu Zilong Zhuang Dong-Liang Peng Qiaobao Zhang
Journal of Materiomics2025,Vol.11Issue(5):P.274-284,11.
Journal of Materiomics2025,Vol.11Issue(5):P.274-284,11.DOI:10.1016/j.jmat.2025.101053
Effective binding sufficiently-small SiO_(2) nanoparticles within carbon nanosheets framework enables a high-performing and durable anode for lithium-ion batteries
摘要
关键词
Silica/Anode/Carbon nanosheets/Lithium-ion batteries/In-situ characterizations分类
信息技术与安全科学引用本文复制引用
Zhefei Sun,Zhiwen Zhang,Shenghui Zhou,Weicheng Liu,Jianhui Liu,Quanzhi Yin,Jianhai Pan,Xiaoyu Wu,Zilong Zhuang,Dong-Liang Peng,Qiaobao Zhang..Effective binding sufficiently-small SiO_(2) nanoparticles within carbon nanosheets framework enables a high-performing and durable anode for lithium-ion batteries[J].Journal of Materiomics,2025,11(5):P.274-284,11.基金项目
supported by the National Natural Science Foundation of China(Grants Nos.52122211,92472104,52072323) (Grants Nos.52122211,92472104,52072323)
the Frontier Exploration Projects of Longmen Laboratory(Grant No.LMQYTSKT008) (Grant No.LMQYTSKT008)
the Shenzhen Technical Plan Project(No.JCYJ20220818101003008). (No.JCYJ20220818101003008)