4.8 Article

Thermally Reduced Graphene Oxide Electrochemically Activated by Bis-Spiro Quaternary Alkyl Ammonium for Capacitors

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 8, Issue 22, Pages 13865-13870

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b00885

Keywords

bis-spiro quaternary alkyl ammonium; thermal reduced graphene oxide; organic electrolyte; electrochemical activation; capacitor

Funding

  1. National Natural Science Foundation of China [21206083]
  2. Project of Liaoning Province of China [LR2014033]
  3. Training Project of Innovation and Entrepreneurship for Undergraduate [201510167000006, 201510167000019]

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Thermally reduced graphene oxide (RGO) electrochemically activated by a quaternary alkyl ammonium based organic electrolytes/activated carbon (AC) electrode asymmetric capacitor is proposed. The electrochemical activation process includes adsorption of anions into the pores of AC in the positive electrode and the interlayer intercalation of cations' into RGO in the negative electrode under high potential (4.0 V). The EA process of RGO by quaternary alkyl ammonium was investigated by X-ray diffraction and electrochemical measurements, and the effects of cation size and structure were extensively evaluated:, Intercalation by quaternary alkyl ammonium demonstrates a small degree of expansion of the whole crystal lattice (don) and a large degree of expansion of the partial crystal lattice (don) of RGO. RGO electrochemically activated by bis-spiro quaternary alkyl ammonium in propylene carbonate/AC asymmetric capacitor exhibits good activated efficiency, high specific capacity, and stable cyclability.

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