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    • 6. 发明申请
    • GRAPHENE/METAL NANOWIRE HYBRID TRANSPARENT CONDUCTIVE FILMS
    • 石墨/金属纳米复合透明导电膜
    • US20140313562A1
    • 2014-10-23
    • US14250019
    • 2014-04-10
    • Board of Regents, The University of Texas System
    • Rodney S. RuoffIskandar Kholmanov
    • G02F1/15
    • G02F1/155G02F1/1506G02F2202/36G02F2202/38H01B1/02H01B1/04H01B5/14Y10T428/12056Y10T428/31678
    • A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive films, involving the assembly of two-dimensional graphene-based materials with one-dimensional silver and/or copper nanowires with high optical transmittance and good electrical conductivity. The hybrid films are characterized by a good degree of control of the architecture at the nanoscale level, where the weakness(es) of each component are offset by the strengths of the other components. By rational design of the structure and using simple and locate-cost fabrication methods, hybrid films with sheet resistance of 26 ohm/sq and optical transmittance (at λ=550 nm) of 83% for reduced graphene oxide/silver nanowire films, and 64 ohm/sq and optical transmittance of 93.6% for monolayer graphene/silver nanowire films have been fabricated. These values are comparable to transparent conductive films based on indium tin oxide but are now able to be used in flexible electronics due to their good mechanical properties.
    • 混合透明导电膜,以及制造这种混合透明导电膜的方法,其涉及利用具有高透光率和良好导电性的一维银和/或铜纳米线组装二维石墨烯材料。 混合膜的特征在于在纳米尺度上对结构进行良好的控制,其中每个部件的弱点被其它部件的强度所抵消。 通过合理设计结构,使用简单和定位成本的制造方法,薄膜电阻为26欧姆/平方厘米的混合薄膜和减少的氧化烯/氧化银纳米线薄膜的光透射率(λ= 550nm)为83%,64 欧姆/平方厘米,单层石墨烯/银纳米线膜的透光率为93.6%。 这些值与基于氧化铟锡的透明导电膜相当,但由于其良好的机械性能,现在能够用于柔性电子器件。