4.8 Article

A gradient bi-functional graphene-based modified electrode for vanadium redox flow batteries

期刊

ENERGY STORAGE MATERIALS
卷 13, 期 -, 页码 66-71

出版社

ELSEVIER
DOI: 10.1016/j.ensm.2017.12.026

关键词

Gradient material; Oxygen-containing functional groups; Graphene oxide; Reduced graphene oxide; Vanadium redox flow battery

资金

  1. Ministry of Science and Technology of China [2016YFA0200102, 2016YBF0100100, 2014CB932402]
  2. NSFC [51525206, 51521091, 51372253, U1401243]
  3. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA09010104]
  4. Key Research Program of the Chinese Academy of Sciences [KGZD-EW-T06]
  5. Youth Innovation Promotion Association of the Chinese Academy of Sciences [2015150]
  6. Natural Science Foundation of Liaoning Province [2015021012]
  7. Institute of Metal Research [2015-PY03]
  8. CAS/SAFEA International Partnership Program for Creative Research Teams

向作者/读者索取更多资源

Vanadium redox flow batteries (VRFBs) are an ideal choice for large-scale energy storage because they have the advantages of long cycle life, flexible design and high safety. However, the poor electrocatalytic activity of carbon-based materials results in a large polarization resistance and energy loss during charge/discharge that greatly limits their commercial viability. Here we report a hybrid electrode with a gradient bi-functional oxygen-containing groups for VRFBs. It consists of a hybrid material of graphene oxide (GO), reduced graphene oxide (rGO) and graphene foam (GF) that combines materials with a high electrocatalytic activity (GO) and a high electrical conductivity (GF). One side is enriched with functional groups and provides preferential redox reversibility for VO2+/VO2+ and V3+/V2+ redox couples because of the electrocatalytic nature of the many oxygen functional groups. The side with the low concentration of functional groups has a high electrical conductivity and facilitates electron transfer. As a result, this VRFB electrode achieves a low polarization, high discharge capacity, high energy density, and high energy efficiency and has great promise for use in VRFBs.

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