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Transparent, flexible conducting hybrid multilayer thin films of multiwalled carbon nanotubes with graphene nanosheets

机译:具有石墨烯纳米片的多壁碳纳米管的透明,柔性导电杂化多层薄膜

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摘要

We developed a simple, versatile method of integrating hybrid thin films of reduced graphene oxide (RGO) nanosheets with multiwalled carbon nanotubes (MWNTs) via LbL assembly. This approach involves the electrostatic interactions of two oppositely charged suspensions of the RGO nanosheet with MWNTs. This method affords a hybrid multilayer of graphenes with excellent control over the optical and electrical properties. Moreover, the hybrid multilayer exhibits a significant increase of electronic conductivity after the thermal treatment, producing transparent and conducting thin films possessing a sheet resistance of 8 kω/sq with a transmittance of 81%. By taking advantage of the conducting network structure of MWNTs, which provides an additional flexibility and mechanical stability of RGO nanosheets, we demonstrate the potential application of hybrid graphene multilayer as a highly flexible and transparent electrode. Because of the highly versatile and tunable properties of LbL-assembled thin films, we anticipate that the general concept presented here offers a unique potential platform for integrating active carbon nanomaterials for advanced electronic, energy, and sensor applications.
机译:我们开发了一种简单,通用的方法,通过LbL组装将还原性氧化石墨烯(RGO)纳米片的混合薄膜与多壁碳纳米管(MWNT)结合在一起。该方法涉及RGO纳米片的两个带相反电荷的悬浮液与MWNT的静电相互作用。该方法提供了具有优异的光学和电学性能控制的石墨烯杂化多层。此外,该杂化多层在热处理之后显示出电子导电性的显着增加,从而产生具有8kω/ sq的薄层电阻和81%的透射率的透明且导电的薄膜。通过利用MWNTs的导电网络结构,它为RGO纳米片提供了额外的灵活性和机械稳定性,我们证明了杂化石墨烯多层作为高柔性和透明电极的潜在应用。由于LbL组装的薄膜具有高度的通用性和可调性,我们希望这里介绍的一般概念为集成用于高级电子,能源和传感器应用的活性碳纳米材料提供了一个独特的潜在平台。

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