School of light industry and engineering, South China University of Technology, Guangzhou, 510641, China.
Sci Rep. 2020 Feb 20;10(1):3124. doi: 10.1038/s41598-020-59918-z.
With the rapid development of wearable and portable electronic devices, it is increasingly important to develop conductive paper-like films (CPFs) with the characteristics of light, thin and self-supporting. In this paper, nanofibrillated cellulose (NFC) was used as reinforcing phase of film-forming to combine with graphene oxide (GO). Then graphene-based CPFs were prepared by directly reducing the GO/NFC composite film without any additional adhesives, which effectively avoided the difficulties of dispersion and combination with other materials caused by direct using of high content graphene. Meanwhile, three representative reduction methods for direct reduction of GO/NFC composite films were also compared. The results show that 450 °C thermal reduction and hydroiodic acid reduction were more effective than ascorbic acid reduction. On this basis, hydroiodic acid reduction and thermal reduction were used to discuss the effect of NFC addition to the conductivity of the film. This occured when increasing the content of NFC from 10% to 50%, the electrical conductivity of the composite film by hydroiodic acid reduction decreased from 153.8 S/m to 22.2 S/m. While the conductivity of composite film increased first and then decreased after thermal reduction both at 450 °C and 550 °C. What's more, when NFC content was about 16.6% the electrical conductivity reached a high level which was 86.21 S/m and 168.9 S/m, respectively. This study provides a groundwork for the further development of graphene-based CPFs with low square resistance and high conductivity in large-scale preparation.
随着可穿戴和便携式电子设备的快速发展,开发具有轻薄自支撑特性的导电纸状薄膜(CPFs)变得越来越重要。本文以纳米纤维素纤维(NFC)作为薄膜形成的增强相,与氧化石墨烯(GO)结合。然后,通过直接还原 GO/NFC 复合薄膜而无需任何额外的粘合剂来制备基于石墨烯的 CPFs,这有效地避免了直接使用高含量石墨烯所带来的分散和与其他材料结合的困难。同时,还比较了三种具有代表性的直接还原 GO/NFC 复合薄膜的还原方法。结果表明,450°C 热还原和氢碘酸还原比抗坏血酸还原更有效。在此基础上,使用氢碘酸还原和热还原来探讨 NFC 对薄膜电导率的影响。当 NFC 含量从 10%增加到 50%时,氢碘酸还原复合膜的电导率从 153.8 S/m 降低到 22.2 S/m。而在 450°C 和 550°C 下进行热还原时,复合膜的电导率先增加后降低。此外,当 NFC 含量约为 16.6%时,电导率达到较高水平,分别为 86.21 S/m 和 168.9 S/m。这项研究为进一步开发具有低方块电阻和高电导率的大规模制备基于石墨烯的 CPFs 提供了基础。