Ultralight and Anisotropic Heterocyclic Para-aramid Nanofiber/Reduced Graphene Oxide Composite Aerogel for Efficient Thermal Insulation and Flame Retardancy

IF 4.1 2区 化学 Q2 POLYMER SCIENCE
Wen-Wen Wu, Jian-Xun Shang, Na Li, Yan Wang, Jun-Rong Yu, Zu-Ming Hu
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Abstract

The demand for anisotropic aerogels with excellent comprehensive properties in cutting-edge fields such as aerospace is growing. Based on the above background, a novel heterocyclic para-aramid nanofiber/reduced graphene oxide (HPAN/rGO) composite aerogel was prepared by combining electrospinning and unidirectional freeze-drying. The anisotropic HPAN/rGO composite aerogel exhibited a honeycomb morphology in the direction perpendicular to the growth of ice crystals, and a through-well structure of directed microchannels in the direction parallel to the temperature gradient. By varying the mass ratio of HPAN/rGO, a composite aerogel with an ultra-low density of 5.34–7.81 mg·cm−3 and an ultra-high porosity of 98%–99% was obtained. Benefiting from the anisotropic structure, the radial and axial thermal conductivities of HPAN/rGO-3 composite aerogel were 29.37 and 44.35 mW·m−1·K−1, respectively. A combination of software simulation and experiments was used to analyze the effect of anisotropic structures on the thermal insulation properties of aerogels. Moreover, due to the intrinsic self-extinguishing properties of heterocyclic para-aramid and the protection of the graphene carbon layer, the composite aerogel also exhibits excellent flame retardancy properties, and its total heat release rate (THR) was only 5.8 kJ·g−1, which is far superior to many reported aerogels. Therefore, ultralight anisotropic HPAN/rGO composite aerogels with excellent high-temperature thermal insulation and flame retardancy properties have broad application prospects in complex environments such as aerospace.

超轻、各向异性杂环对芳纶纳米纤维/还原氧化石墨烯复合气凝胶的高效保温阻燃研究
航空航天等前沿领域对综合性能优良的各向异性气凝胶的需求日益增长。基于上述背景,采用静电纺丝和单向冷冻干燥相结合的方法制备了一种新型杂环对芳纶纳米纤维/还原性氧化石墨烯复合气凝胶。各向异性的HPAN/rGO复合气凝胶在垂直于冰晶生长方向上呈现蜂窝形态,在平行于温度梯度方向上呈现定向微通道的通孔结构。通过改变HPAN/rGO的质量比,得到了超低密度5.34 ~ 7.81 mg·cm−3、超高孔隙率98% ~ 99%的复合气凝胶。得益于各向异性结构,HPAN/rGO-3复合气凝胶的径向和轴向导热系数分别为29.37和44.35 mW·m−1·K−1。采用软件模拟与实验相结合的方法,分析了各向异性结构对气凝胶保温性能的影响。此外,由于杂环对芳烃固有的自熄特性和石墨烯碳层的保护,复合气凝胶还表现出优异的阻燃性能,其总放热率(THR)仅为5.8 kJ·g−1,远远优于许多报道的气凝胶。因此,具有优异高温保温阻燃性能的超轻各向异性HPAN/rGO复合气凝胶在航空航天等复杂环境中具有广阔的应用前景。
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来源期刊
Chinese Journal of Polymer Science
Chinese Journal of Polymer Science 化学-高分子科学
CiteScore
7.10
自引率
11.60%
发文量
218
审稿时长
6.0 months
期刊介绍: Chinese Journal of Polymer Science (CJPS) is a monthly journal published in English and sponsored by the Chinese Chemical Society and the Institute of Chemistry, Chinese Academy of Sciences. CJPS is edited by a distinguished Editorial Board headed by Professor Qi-Feng Zhou and supported by an International Advisory Board in which many famous active polymer scientists all over the world are included. The journal was first published in 1983 under the title Polymer Communications and has the current name since 1985. CJPS is a peer-reviewed journal dedicated to the timely publication of original research ideas and results in the field of polymer science. The issues may carry regular papers, rapid communications and notes as well as feature articles. As a leading polymer journal in China published in English, CJPS reflects the new achievements obtained in various laboratories of China, CJPS also includes papers submitted by scientists of different countries and regions outside of China, reflecting the international nature of the journal.
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