• 专利标题:   Preparation of reduced graphene oxide-coated copper nanowire conductive composite material for flexible transparent electrode, involves adding ammonium- and cuprous chloride and oleylamine to graphene oxide dispersion and processing.
  • 专利号:   CN108707997-A
  • 发明人:   WANG G, YE D, LI G, ZHOU H
  • 专利权人:   HARBIN INST TECHNOLOGY SHENZHEN GRADUATE
  • 国际专利分类:   D01F009/08, D01F001/09, D06M011/74, H01B005/14, H01B001/02, H01B001/04, B82Y030/00
  • 专利详细信息:   CN108707997-A 26 Oct 2018 D01F-009/08 201904 Pages: 12 Chinese
  • 申请详细信息:   CN108707997-A CN10527542 29 May 2018
  • 优先权号:   CN10527542

▎ 摘  要

NOVELTY - Preparation of reduced graphene oxide-coated copper nanowire conductive composite material involves dispersing graphene oxide in mixed solution of ethylene glycol, glycerin and polyethylene glycol, ultrasonically processing, obtaining graphene oxide dispersion, adding ammonium chloride, cuprous chloride and oleylamine to graphene oxide dispersion, stirring, mixing, obtaining mixed solution, reacting resultant mixture at 180-220 degrees C for 8-15 hours, washing resultant product and centrifuging. USE - Preparation of reduced graphene oxide-coated copper nanowire conductive composite material for flexible transparent electrode (claimed). ADVANTAGE - The method efficiently provides reduced graphene oxide-coated copper nanowire conductive composite material having excellent photoelectric property and oxidation resistance, by simple method. DETAILED DESCRIPTION - INDEPENDENT CLAIMS are included for the following: (1) method of preparing electrode based on graphene coated copper nanowire conductive composite material. Reduced graphene oxide-coated copper nanowire conductive composite material is added to a solvent, transferred to substrate by vacuum filtration, and obtained substrate with reduced graphene oxide-coated copper nanowire composite material is immersed in sodium borohydride solution, reduced, washed and dried to obtain electrode; and (2) application of electrode based on graphene coated copper nanowire conductive composite material in flexible transparent electrode.