Fabrication and Characterization of Polyurethane/Graphene Composite: Study on Conductivity and Thermal Properties

Sharifah Nafisah Syed Ismail
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Abstract

This study investigated the potential of graphene for improvement of properties of thermoplastic polyurethane (PU) composites in sight of thermal property, electrical conductivity, hardness, gel content and bonding spectra (FTIR). Polyurethane/graphene (PU/G) composites were synthesized by exfoliating graphene with DMF and then blending it with PEG and IPDI via in-situ addition polymerization with varying graphene concentrations (0–0.18 wt %), resulting in uniform dispersion and partial exfoliation of graphene-sheets in PU matrix. The PU/G synthesis was analyzed by IR spectra analysis, which revealed apparent urethane connections and hydrogen bonding. Glass transition temperature (Tg) property of PU exceeded by around 55 % with the addition of graphene, and it improved steadily as graphene concentration increased. 7B pencil hardness replicated the hardness of the PU/G2, indicating an improvement in hardness. The inclusion of graphene had less of an influence on the gel content of PU, with a proof showing that all of the results gel content was between 80 – 90 %. With the addition of 0.088 % graphene to PU, the electric conductivity improved to 76 %. The composite's conductivity was improved due to graphene's capacity to conduct electricity and the covalent link between PU and graphene.
聚氨酯/石墨烯复合材料的制备与表征:电导率和热性能研究
本研究从热性能、电导率、硬度、凝胶含量和键合光谱(FTIR)等方面考察了石墨烯在改善热塑性聚氨酯(PU)复合材料性能方面的潜力。采用DMF将石墨烯剥落,再与不同浓度(0-0.18 wt %)的PEG和IPDI进行原位加成聚合,制备聚氨酯/石墨烯(PU/G)复合材料,使石墨烯片在PU基体中分散均匀,部分剥落。通过红外光谱分析分析了PU/G的合成过程,发现了明显的聚氨酯连接和氢键。随着石墨烯的加入,PU的玻璃化转变温度(Tg)性能提高了55%左右,并且随着石墨烯浓度的增加,PU的玻璃化转变温度(Tg)性能稳步提高。7B铅笔硬度与PU/G2的硬度相同,表明硬度有所提高。石墨烯的加入对PU凝胶含量的影响较小,证明所有结果的凝胶含量都在80 - 90%之间。在PU中添加0.088%的石墨烯,其电导率提高到76%。由于石墨烯的导电能力和PU与石墨烯之间的共价键,复合材料的导电性得到了提高。
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