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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fabrication of free-standing multilayered graphene and poly(3,4- ethylenedioxythiophene) Composite films with enhanced conductive and mechanical properties
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Fabrication of free-standing multilayered graphene and poly(3,4- ethylenedioxythiophene) Composite films with enhanced conductive and mechanical properties

机译:具有增强的导电和机械性能的自支撑多层石墨烯和聚(3,4-乙撑二氧噻吩)复合薄膜的制备

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摘要

Poly(3,4-ethylenedioxythiophene) (PEDOT)-based film has relatively high conductivity, flexibility, and transmittance. However, the improvement for mechanical strength and conductivity is still required to be adopted for commerical applications. Graphene, a one atom thick planar sheet of sp ~2-bonded carbon atoms, is considered as an ideal nanocomposite material for these purposes. In this study, we have developed PEDOT and graphene composite films, two-layered graphene/PEDOT and three-layered graphene/PEDOT/graphene, by using a spin-coating method. The conductivity of a 32 nm thick PEDOT film was improved more than twice by graphene deposition, while the high transmittance of the composite film was maintained over 90%. The mechanical strength of the PEDOT and graphene composite film shows 6-fold enhancement over the pristine PEDOT film. Because of the contribution of graphene layer for enhancing the mechanical strength, a 44 nm thick graphene/PEDOT/graphene could be obtained as a free-standing film by delaminating the graphene layer from the glass substrate under a weak base solution. These results imply that the graphene not only improves the conductivity and mechanical strength of PEDOT but also enables to produce a free-standing film which could find a variety of applications in the fields of organic electronic, sensors, and optoelectronics.
机译:聚(3,4-乙撑二氧噻吩)(PEDOT)基薄膜具有相对较高的电导率,柔韧性和透射率。然而,对于商业应用仍然需要采用机械强度和导电性的改进。石墨烯是由sp〜2键合的碳原子构成的单原子厚的平面片,被认为是用于这些目的的理想纳米复合材料。在这项研究中,我们通过旋涂方法开发了PEDOT和石墨烯复合膜,两层石墨烯/ PEDOT和三层石墨烯/ PEDOT /石墨烯。通过石墨烯沉积,使32 nm厚的PEDOT膜的电导率提高了两倍以上,而复合膜的高透射率保持在90%以上。 PEDOT和石墨烯复合膜的机械强度比原始PEDOT膜提高了6倍。由于石墨烯层对提高机械强度的贡献,通过在弱碱溶液下从玻璃基板上剥离石墨烯层,可以得到44nm厚的石墨烯/ PEDOT /石墨烯作为自支撑膜。这些结果表明,石墨烯不仅改善了PEDOT的导电性和机械强度,而且使得能够生产自立式膜,该膜可以在有机电子,传感器和光电子学领域中找到各种应用。

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