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Enhanced Reduction of Graphene Oxide on Recyclable Cu Foils to Fabricate Graphene Films with Superior Thermal Conductivity

机译:增强可回收铜箔上石墨烯氧化物的还原以制造具有优异导热性的石墨烯薄膜

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摘要

Large-area freestanding graphene films are facilely fabricated by reducing graphene oxide films on recyclable Cu foils in H2-containing atmosphere at high temperature. Cu might act as efficient catalysts for considerably improved reduction of graphene oxide according to the SEM, EDS, XRD, XPS, Raman and TGA results. Comparing to the graphene films with ~30 μm thickness reduced without Cu substrate at 900 °C, the thermal conductivity and electrical conductivity of graphene films reduced on Cu foils are enhanced about 140% to 902 Wm−1K−1 and 3.6 × 104 S/m, respectively. Moreover, the graphene films demonstrate superior thermal conductivity of ~1219 Wm−1K−1 as decreasing the thickness of films to ~10 μm. The graphene films also exhibit excellent mechanical properties and flexibility.
机译:通过在含H2的气氛中于高温下还原可回收铜箔上的氧化石墨烯膜,可以轻松制造大面积的独立式石墨烯膜。根据SEM,EDS,XRD,XPS,Raman和TGA结果,Cu可能是有效的催化剂,可大大改善氧化石墨烯的还原性。与在900 C下无Cu衬底的情况下厚度减少约30μm的石墨烯膜相比,在Cu箔上还原的石墨烯膜的导热率和电导率提高了约140%,达到902 Wm -1 K -1 和3.6×10 4 S / m。此外,随着膜厚度减小到约10μm,石墨烯膜的导热系数达到〜1219 Wm -1 K -1 。石墨烯膜还表现出优异的机械性能和柔韧性。

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