Küçükkaya Mehmet Akif, Ustamehmetoğlu Utku, Sezer Esma, Ustamehmetoğlu Belkıs
Department of Chemistry, Faculty of Science and Letter, İstanbul Technical University, İstanbul, Turkiye.
Department of Manufacturing, Faculty of Mechanical Engineering, İstanbul Technical University, İstanbul, Turkiye.
Turk J Chem. 2024 Jan 18;48(1):116-127. doi: 10.55730/1300-0527.3644. eCollection 2024.
The purpose of this study was the polymerization of carbazole (Cz), pyrrole (Py) and copolymerization of them onto polyester (PES) textile with chemical oxidative method by using FeCl. First, in order to determine the optimum conditions, the effect of polymerization steps, the immersion order of the PES to the oxidant and monomer solutions, time, monomer, oxidant, and surfactant concentrations and types on the conductivities of PES/PCz composite were investigated and at this conditions, conductive composite, PES/P[Py-co-Cz] was obtained. The highest conductivities were obtained as 12.4 mS/cm and 9.0 mS/cm for PES/PCz and PES/P[Py-co-Cz], respectively. Further characterization of PES/P[Py-co-Cz] was performed by conductivity, FTIR, scanning electron microscopy (SEM), and dynamic mechanical analysis (DMA) measurements, and results were compared with PES/PCz and also PES/PPy. The presence of Py and Cz in the same polymer chain created synergy and improved the conductivity and mechanical properties of the composite.
本研究的目的是通过使用FeCl,采用化学氧化法将咔唑(Cz)、吡咯(Py)聚合以及它们在聚酯(PES)织物上进行共聚。首先,为了确定最佳条件,研究了聚合步骤、PES在氧化剂和单体溶液中的浸渍顺序以及时间、单体、氧化剂和表面活性剂的浓度及类型对PES/PCz复合材料电导率的影响,并在此条件下获得了导电复合材料PES/P[Py-co-Cz]。PES/PCz和PES/P[Py-co-Cz]的最高电导率分别为12.4 mS/cm和9.0 mS/cm。通过电导率、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和动态力学分析(DMA)测量对PES/P[Py-co-Cz]进行了进一步表征,并将结果与PES/PCz以及PES/PPy进行了比较。Py和Cz存在于同一聚合物链中产生了协同作用,提高了复合材料的电导率和力学性能。