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High performance capacitive deionization electrodes based on ultrathin nitrogen-doped carbon/graphene nano-sandwiches

Journal Article


Abstract


  • Here, ultrathin nitrogen-doped carbon/graphene nano-sandwiches were synthesized by carbonization of graphene oxide-based nanosheets, which were fully covered with ultrasmall ZIF-8 nanocrystals. The novel sandwich structure possesses large accessible surface area, excellent electrical conductivity, and high nitrogen content, thus showing superior desalination performance.

Authors


  •   Wang, Miao (external author)
  •   Xu, Xingtao (external author)
  •   Tang, Jing (external author)
  •   Hou, Shujin (external author)
  •   Hossain, Md Shahriar
  •   Pan, Likun (external author)
  •   Yamauchi, Yusuke (external author)

Publication Date


  • 2017

Citation


  • Wang, M., Xu, X., Tang, J., Hou, S., Hossain, M. A., Pan, L. & Yamauchi, Y. (2017). High performance capacitive deionization electrodes based on ultrathin nitrogen-doped carbon/graphene nano-sandwiches. Chemical Communications, 53 (78), 10784-10787.

Scopus Eid


  • 2-s2.0-85030244269

Number Of Pages


  • 3

Start Page


  • 10784

End Page


  • 10787

Volume


  • 53

Issue


  • 78

Place Of Publication


  • United Kingdom

Abstract


  • Here, ultrathin nitrogen-doped carbon/graphene nano-sandwiches were synthesized by carbonization of graphene oxide-based nanosheets, which were fully covered with ultrasmall ZIF-8 nanocrystals. The novel sandwich structure possesses large accessible surface area, excellent electrical conductivity, and high nitrogen content, thus showing superior desalination performance.

Authors


  •   Wang, Miao (external author)
  •   Xu, Xingtao (external author)
  •   Tang, Jing (external author)
  •   Hou, Shujin (external author)
  •   Hossain, Md Shahriar
  •   Pan, Likun (external author)
  •   Yamauchi, Yusuke (external author)

Publication Date


  • 2017

Citation


  • Wang, M., Xu, X., Tang, J., Hou, S., Hossain, M. A., Pan, L. & Yamauchi, Y. (2017). High performance capacitive deionization electrodes based on ultrathin nitrogen-doped carbon/graphene nano-sandwiches. Chemical Communications, 53 (78), 10784-10787.

Scopus Eid


  • 2-s2.0-85030244269

Number Of Pages


  • 3

Start Page


  • 10784

End Page


  • 10787

Volume


  • 53

Issue


  • 78

Place Of Publication


  • United Kingdom