Jia Lingpu, Hao Juan, Feng Qingliang, Li Huiming, Liu Kunping
Key Laboratory of Medicinal and Edible Plants Resources Development of Sichuan Education Department, Institute for Advanced Study, Chengdu University Chengdu 610106 China
Key Laboratory of Medicinal and Edible Plants Resources Development of Sichuan Education Department, Sichuan Industrial Institute of Antibiotics, School of Pharmacy, Chengdu University Chengdu 610106 China
Nanoscale Adv. 2023 Feb 15;5(6):1740-1749. doi: 10.1039/d2na00855f. eCollection 2023 Mar 14.
Although great progress has been achieved in polyphenylene sulfide (PPS) composites by the use of carbon nanotubes (CNTs), the development of cost-efficient, well dispersive and multifunctional integrated PPS composites has yet to be achieved because of the strong solvent resistance of PPS. In this work, a CNTs-PPS/PVA composite material has been prepared by mucus dispersion-annealing, which employed polyvinyl alcohol (PVA) to disperse PPS particles and CNTs at room temperature. Dispersion and scanning electron microscopy observations revealed that PVA mucus can uniformly suspend and disperse micron-sized PPS particles, promoting the interpenetration of the micro-nano scale between PPS and CNTs. During the annealing process, PPS particles deformed and then crosslinked with CNTs and PVA to form a CNTs-PPS/PVA composite. The as-prepared CNTs-PPS/PVA composite possesses outstanding versatility, including excellent heat stability with resistant temperatures up to 350 °C, corrosion resistance against strong acids and alkalis for up to 30 days, and distinguished electrical conductivity with 2941 S m. Besides, a well-dispersed CNTs-PPS/PVA suspension could be used to 3D print microcircuits. Hence, such multifunctional integrated composites will be highly promising in the future of new materials. This research also develops a simple and meaningful method to construct composites for solvent resistant polymers.
尽管通过使用碳纳米管(CNT),聚苯硫醚(PPS)复合材料已取得了巨大进展,但由于PPS具有很强的耐溶剂性,开发具有成本效益、良好分散性和多功能集成的PPS复合材料仍未实现。在这项工作中,通过粘液分散退火制备了一种CNTs-PPS/PVA复合材料,该方法在室温下使用聚乙烯醇(PVA)来分散PPS颗粒和CNT。分散和扫描电子显微镜观察表明,PVA粘液可以均匀地悬浮和分散微米级的PPS颗粒,促进PPS与CNT之间的微纳尺度互穿。在退火过程中,PPS颗粒发生变形,然后与CNT和PVA交联形成CNTs-PPS/PVA复合材料。所制备的CNTs-PPS/PVA复合材料具有出色的多功能性,包括高达350°C的优异热稳定性、长达30天的耐强酸强碱腐蚀性以及2941 S m的显著导电性。此外,一种分散良好的CNTs-PPS/PVA悬浮液可用于3D打印微电路。因此,这种多功能集成复合材料在未来的新材料领域将极具前景。本研究还开发了一种简单且有意义的方法来构建耐溶剂聚合物的复合材料。