Phosphorus and oxygen co-doped composite electrode with hierarchical electronic and ionic mixed conducting networks for vanadium redox flow batteries

The hierarchical electronic and ionic mixed conducting networks build in graphite felt electrodes possess excellent electrocatalytic activity and faster electronic and ionic conduction, resulting in an enhanced energy efficiency of vanadium redox flow batteries with durable life for 1000 cycles and...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2019-09, Vol.55 (77), p.11515-11518
Hauptverfasser: Ling, Wei, Wang, Zhi-An, Ma, Qiang, Deng, Qi, Tang, Jian-Feng, Deng, Lei, Zhu, Liang-Hong, Wu, Xiong-Wei, Yue, Jun-Pei, Guo, Yu-Guo
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container_end_page 11518
container_issue 77
container_start_page 11515
container_title Chemical communications (Cambridge, England)
container_volume 55
creator Ling, Wei
Wang, Zhi-An
Ma, Qiang
Deng, Qi
Tang, Jian-Feng
Deng, Lei
Zhu, Liang-Hong
Wu, Xiong-Wei
Yue, Jun-Pei
Guo, Yu-Guo
description The hierarchical electronic and ionic mixed conducting networks build in graphite felt electrodes possess excellent electrocatalytic activity and faster electronic and ionic conduction, resulting in an enhanced energy efficiency of vanadium redox flow batteries with durable life for 1000 cycles and a high discharge capacity of 10.1 A h L −1 at a current density of 350 mA cm −2 . The GF-TCN electrodes with excellent electrocatalytic activity and faster electron/ion conduction indicate outstanding rate capability and energy efficiency of VRFBs.
doi_str_mv 10.1039/c9cc05355g
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source Royal Society Of Chemistry Journals; Alma/SFX Local Collection
subjects Conduction
Electrodes
Life (durability)
Rechargeable batteries
Vanadium
title Phosphorus and oxygen co-doped composite electrode with hierarchical electronic and ionic mixed conducting networks for vanadium redox flow batteries
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