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Thin Electric Heating Membrane Constructed with a Three-Dimensional Nanofibrillated Cellulose–Graphene–Graphene Oxide System

机译:三维纳米原纤化纤维素-石墨烯-氧化石墨烯体系构建的薄电加热膜

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摘要

Nanofibrillated cellulose (NFC) and graphene oxide (GO) with reinforcing and film-forming properties were employed with graphene to develop a novel and thin electric heating membrane with heat dissipation controllability. A negative charge was found on the surface of GO and NFC in aqueous dispersions, which contributed to the homogeneous distribution of the graphene sheets. The membrane had a good laminated structure with three-dimensional interaction between GO and NFC, with embedded graphene sheets. Conductivity was characterized as a function of the amount of graphene, thus giving control over to the heating power by adjusting the ratio of graphene. Subsequent electric heating tests can remove irregularities on the GO and graphene sheet, improving the laminated structure further. The temperature on the surface of the membrane presented an exponential increasing regularity with time. Under the same power density and time, the stabilized temperature rise of membranes was higher when grammage was higher, which was characterized by the linear function of the power density. Low-grammage membranes (1 and 4 g·m−2) also exhibited regular and even stabilized temperature rises. The indicated structure and heating performance of the membrane, as well as the variation induced by Joule heating, would drive its applications.
机译:将具有增强和成膜性能的纳米原纤化纤维素(NFC)和氧化石墨烯(GO)与石墨烯一起使用,以开发具有散热可控性的新型薄电加热膜。在水分散液中的GO和NFC表面发现带负电荷,这有助于石墨烯片的均匀分布。该膜具有良好的层压结构,在GO和NFC之间具有三维相互作用,并嵌入了石墨烯片。电导率的特征是石墨烯含量的函数,因此可以通过调节石墨烯的比例来控制加热功率。随后的电加热测试可以消除GO和石墨烯片上的不规则现象,从而进一步改善层压结构。膜表面的温度随时间呈指数规律增加。在相同的功率密度和时间下,克重越高,膜的稳定温升就越高,其特征在于功率密度的线性函数。低克重的膜(1和4 g·m −2 )也表现出规律的甚至稳定的温度上升。膜的指示结构和加热性能以及焦耳加热引起的变化将推动其应用。

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