Highly enhanced electrochemical cycling stabilities of hierarchical partially-embedded MnO/carbon nanofiber composites as supercapacitor electrodes

Zhe Dai, Chao Yue Zhang, Guo Wen Sun, Yu Hai Wang, Zhong Wei Lu, Hao Zhao, Geng Zhi Sun, Xiu Ping Gao, Wei Lan, Zhen Xing Zhang, Xiao Jun Pan, Jin Yuan Zhou

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摘要

Post-grown hierarchical pseudocapacitive nanostructures often suffer from their bad long-term cycling stability. In this work, a type of hierarchical partially-embedded MnO nanocube/electrospun carbon nanofiber composites (pe-MnO/ECNFs) was designed. Results show the MnO nanocubes are partially embedded into the ECNFs skeletons, showing a strong joint between them. The pe-MnO/ECNFs electrodes exhibit a high specific capacitance of 146 F g−1 (to the whole electrode mass) at scan rate of 5 mV s−1, and an ultralow decay rate of 0.004‰ per cycle for 20,000 cycles at 10 A g−1, which is much better than those of the MnO2/ECNF ones (96 F g−1, decay rate of 0.015‰ per cycle). Furthermore, the assembled flexible symmetric supercapacitors show an high energy density of 6.8 W h kg−1, a high dynamic bending stability, and a robust long cycling stability (low decay rate of 0.003‰ per cycle for 6000 cycles at 1 A g−1).

源语言英语
文章编号114684
期刊Materials Science and Engineering: B
262
DOI
出版状态已出版 - 12月 2020

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