Ao Dongyi, Tang Yongliang, Xu Xiaofeng, Xiang Xia, Yu Jingxia, Li Sean, Zu Xiaotao
School of Physics, University of Electronic Science and Technology of China, Chengdu 610054, China.
School of Physical Science and Technology, Southwest Jiaotong University, Chengdu 610031, China.
Nanomaterials (Basel). 2020 Apr 16;10(4):768. doi: 10.3390/nano10040768.
A highly conductive three-dimensional (3D) graphene network (GN) was fabricated by chemical vapor deposition on a 3D nickel fiber network and subsequent etching process. Then a lightweight and flexible polydimethylsiloxane (PDMS)/GN composite was prepared by a vacuum infiltration method by using the graphene network as a template. The composite showed the superior electrical conductivity of 6100 S/m even at a very low loading level of graphene (1.2 wt %). As a result, an outstanding electromagnetic interference (EMI) shielding effectiveness (SE) of around 40 and 90 dB can be achieved in the X-band at thicknesses of 0.25 and 0.75 mm, respectively, which are much higher than most of the conductive polymers filled with carbon. The 3D graphene network can also act as a mechanical enhancer for PDMS. With a loading level of 1.2 wt %, the composite shows a significant increase by 256% in tensile strength.
通过化学气相沉积法在三维镍纤维网络上制备了一种高导电三维(3D)石墨烯网络(GN),随后进行蚀刻工艺。然后,以石墨烯网络为模板,采用真空浸渍法制备了轻质且柔性的聚二甲基硅氧烷(PDMS)/GN复合材料。即使在石墨烯负载量非常低(1.2 wt%)的情况下,该复合材料仍显示出6100 S/m的优异电导率。结果,在X波段,当厚度分别为0.25和0.75 mm时,可实现约40 dB和90 dB的出色电磁干扰(EMI)屏蔽效能(SE),这远高于大多数填充碳的导电聚合物。三维石墨烯网络还可作为PDMS的机械增强剂。在负载量为1.2 wt%时,复合材料的拉伸强度显著提高了256%。