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Cellulose Nanowhisker (CNW)/Graphene Nanoplatelet (GN) Composite Films With Simultaneously Enhanced Thermal, Electrical and Mechanical Properties

机译:纤维素纳米烷烃(CNW)/石墨烯纳米薄机构(GN)复合膜,具有同时增强的热,电气和机械性能

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Transparent cellulose nanowhisker (CNW)/ graphene nanoplatelet (GN) composite films were produced via sonication mixing and solution casting methods. Such composite films exhibited improved thermal, electrical and mechanical properties. The material morphologies and microstructures were examined using scanning electronic microscopy (SEM), X-ray diffraction (XRD) analysis and Raman spectroscopy. Strong interaction was detected when CNWs were randomly attached onto graphene sheets, as evidenced by SEM images obtained in this study. In particular, the addition of GNs into CNWs had significant effect on the thermal behavior of composite films. The melting temperature (Tm) and initial thermal decomposition temperature (Tid) of CNW films were both increased by 23.2, 29.3, 26.3oC, and 70.2, 88.4, 87.8oC with the inclusions of 0.1, 0.25 and 0.5 wt% GNs, respectively. The electrical conductivity of composite films was enhanced in a monotonically increasing manner with the maximum level of 4.0×10-5 S/m detected at the GN content of 0.5 wt%. Their tensile strength was also improved by maximum 33.7% when increasing the GN content up to 0.25 wt% as opposed to that of CNW films. Such CNW/GN composite films can be potentially used in green anti-static and electronic packaging applications.
机译:通过超声混合和溶液浇铸方法生产透明纤维素纳米烷烃(CNW)/石墨烯纳米薄膜(GN)复合膜。这种复合膜表现出改善的热,电气和机械性能。使用扫描电子显微镜(SEM),X射线衍射(XRD)分析和拉曼光谱检查材料形态和微观结构。当CNW被随机连接到石墨烯片上时,检测强相互作用,如本研究中获得的SEM图像所证明的。特别地,将GNS添加到CNW上对复合膜的热行为产生显着影响。 CNW薄膜的熔化温度(TM)和初始热分解温度(TID)分别增加23.2,29.3,26.3oC和70.2,88.4,87.8oC,其夹杂物分别为0.1,0.25和0.5wt%GNS。复合膜的电导率以单调的增加的方式增强,在GN含量为0.5wt%的GN含量下检测到4.0×10-5 s / m的最大水平。当与CNW薄膜的GN含量增加高达0.25重量%时,它们的拉伸强度也在最大33.7%。这种CNW / GN复合膜可以潜在地用于绿色防静电和电子包装应用。

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