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石墨烯複合透明導電膜之研究

Study of Transparent and Conductive Grphene Hybrid Films

摘要


石墨烯因具有優異之光學、電氣、熱傳及機械性質,已廣泛在製造、特性及應用上進行探討。本研究藉由奈米銀絲摻混於石墨烯中,製作石墨烯複合透明導電膜,探討其物性及可能增益之機制。氧化石墨烯藉由適度參數調整,以Modified Hummer法對石墨進行氧化的程序來製作;奈米銀絲透過多元醇合成法來合成及作適當的長軸比控制。實驗結果顯示,石墨烯-銀絲複合導電膜的導電特性較純石墨烯或純銀絲的導電膜來的優異。推測可能的原因是因為奈米銀絲在石墨烯間形成連結,彼此之間構成導電網路,有效降低接觸電阻,因此增強複合導電薄膜的導電能力。

並列摘要


Graphene nanosheets have attracted significant attention due to their excellent optical, electrical, thermal, and mechanical properties. In this study, the transparent and conductive graphene hybrid films were prepared by incorporating silver nanowires into graphene, and the corresponding properties and possible mechanisms were further discussed. Graphene oxide and silver nanowires were synthesized by the Hummers methods and the polyol synthesis method, respectively. The experimental results show that the surface resistance of the hybrid films is much lower than those of pure graphene films and silver nanowire films. We infer that the enhancement may arise from the formation of the network between grapheme and silver nanowires to reduce the junction resistance.

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