• 文献标题:   In-situ synthesis of Cu-based conductive metal organic frameworks on graphene layers for high-performance lithium and potassium ion batteries
  • 文献类型:   Article
  • 作  者:   YIN XJ, LI YM, CAI WS, FAN C, LIU WQ, WANG NN, QIN GX, XIE Z, CHEN XD, HAN Y
  • 作者关键词:   conductive metal organic framework, graphene, lithium ion batterie, lithium storage mechanism, potassium ion batterie
  • 出版物名称:   APPLIED SURFACE SCIENCE
  • ISSN:   0169-4332 EI 1873-5584
  • 通讯作者地址:  
  • 被引频次:   0
  • DOI:   10.1016/j.apsusc.2023.157124 EA MAR 2023
  • 出版年:   2023

▎ 摘  要

To meet the increasing energy demands, developing new materials is necessary for high-performance rechargeable batteries. Using hexahydroxytriphenylene (HHTP) as ligand, a novel Cu-based conductive metal organic framework composite (Cu-HHTP/G) was synthesized by adding graphene (G) in situ during the synthesis process. The introduction of graphene could effectively reduce the stacking of Cu-HHTP and induce the formation of a continuous 2D conductive network which could efficiently facilitate the charge transfer. The higher porosity and more exposed surface of Cu-HHTP/G compared with pristine Cu-HHTP resulted in better electrochemical performances. The ex-situ XPS analysis confirmed that both copper ions and aromatic rings of the ligand participated in the lithium storage mechanism. When tested as anode of lithium-ion and potassium-ion batteries (LIBs and PIBs) for the first time, Cu-HHTP/G composite provided large reversible capacities of 1086/226 mAh g(-1) for LIBs/PIBs at 0.1 C after 300 cycles. In addition, it still exhibited the specific capacities of 621/165 mAh g(-1) for LIBs/PIBs at 1 C after 500 cycles. The Cu-HHTP/G composite represented a promising anode of next-generation LIBs and PIBs.