Jiang Xinyue, Zhao Zhixi, Zhou Shengtai, Zou Huawei, Liu Pengbo
State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu 610065, China.
ACS Appl Mater Interfaces. 2022 Oct 12;14(40):45844-45852. doi: 10.1021/acsami.2c13000. Epub 2022 Sep 27.
High-performance and lightweight carbon aerogels (CAs) have attracted considerable attention in various fields such as electrochemistry, catalysis, adsorption, energy storage, and so on. However, finding an environmentally friendly and efficient preparation method and achieving a controllable performance of CAs are still a challenge. Herein, a series of anisotropic carbon/graphene composite aerogels were synthesized by unidirectional freezing of polyamic acid ammonium salt/graphene oxide (PAS/GO) suspension followed by lyophilization, thermal imidization, and carbonization. The prepared aerogels presented a tubular pore structure oriented along the freezing direction. The GO dispersed in the polymer matrix reinforced the skeleton of aerogels, which significantly inhibited the volume shrinkage during the preparation process, thus giving low densities of 0.074-0.185 g cm. In addition, the oriented pore structure endowed the composite aerogels with obviously anisotropic heat insulation performance. The radial thermal conductivity was as low as 0.038 W m K at the density of 0.074 g cm. When the initial content of GO rose to 20 phr, the resultant aerogels exhibited a high electrical conductivity of about 0.77 S cm in the radial direction and the electromagnetic interference shielding effectiveness (EMI SE) reached 54.6 dB at the same time. Therefore, this study provided a facile and environmentally friendly method to prepare lightweight and anisotropic carbon aerogels.
高性能且轻质的碳气凝胶(CAs)在电化学、催化、吸附、能量存储等各个领域都引起了广泛关注。然而,找到一种环境友好且高效的制备方法并实现碳气凝胶性能的可控性仍是一项挑战。在此,通过对聚酰胺酸铵盐/氧化石墨烯(PAS/GO)悬浮液进行单向冷冻,随后进行冻干、热亚胺化和碳化,合成了一系列各向异性的碳/石墨烯复合气凝胶。所制备的气凝胶呈现出沿冷冻方向取向的管状孔结构。分散在聚合物基体中的氧化石墨烯增强了气凝胶的骨架,这显著抑制了制备过程中的体积收缩,从而得到密度低至0.074 - 0.185 g/cm³的气凝胶。此外,取向孔结构赋予了复合气凝胶明显的各向异性隔热性能。在密度为0.074 g/cm³时,径向热导率低至0.038 W/(m·K)。当氧化石墨烯的初始含量升至20 phr时,所得气凝胶在径向方向表现出约0.77 S/cm的高电导率,同时电磁干扰屏蔽效能(EMI SE)达到54.6 dB。因此,本研究提供了一种简便且环境友好的方法来制备轻质且各向异性的碳气凝胶。