Sun Handong, Lv Yunxia, Zhang Chongyang, Zuo Xiaodan, Li Mengzhu, Yue Xigui, Jiang Zhenhua
Key Laboratory of High Performance Polymers of the Ministry Education of China, College of Chemistry, Jilin University 2699 Qianjin Street Changchun 130012 People's Republic of China
National Center of Quality Supervision and Inspection of Automobile Spare Parts 6888 Nanhu Road Changchun 130012 China
RSC Adv. 2018 Feb 19;8(14):7753-7760. doi: 10.1039/c7ra13600e. eCollection 2018 Feb 14.
A new monomer, 2,6-difluorophenyl-(4'-perfluorononenyloxy)phenyl-methanone (2F-PFN), was synthesized using a simple two-step reaction. A series of novel poly(ether ether ketone)s (PEEK-PFN-) containing perfluorononenyl groups were then prepared from 2F-PFN, resorcin, and 4,4'-difluorobenzophenone by nucleophilic polycondensation. The resulting copolymers were found to have different electric and thermal properties depending on the molar ratio of perfluorononenyl groups. PEEK containing a 5% molar ratio of perfluorononenyl (PEEK-PFN-5) possessed an intrinsic low dielectric constant of 2.73 and low dielectric loss of 3.00 × 10 at 10 kHz. Another blended polymer prepared from PEEK and PTFE (PEEK/PTFE-5) possessed a dielectric constant of 3.21 and dielectric loss of 6.00 × 10 at 10 kHz. Therefore, PEEK/PTFE-5 had much higher dielectric loss than that of PEEK-PFN-5 with the same fluorine content. PEEK-PFN-5 also showed excellent thermal stability, with a 5 wt%-loss temperature of 436 °C. PEEK-PFN-5 showed a slight increase in hydrophobicity, with a water droplet contact angle of 89.7° compared with that of PEEK/PTFE-5 (86.4°) containing the same fluorine content as PEEK-PFN-5. Morphologies and fluoride distribution on the membrane surfaces were characterized by field emission SEM equipped with EDX. These results indicated that PEEK-PFN-5 possessed a more uniform distribution of fluorine on the membrane top surface than PEEK-PTFE-5.
通过简单的两步反应合成了一种新型单体2,6-二氟苯基-(4'-全氟壬烯氧基)苯基甲酮(2F-PFN)。然后,由2F-PFN、间苯二酚和4,4'-二氟二苯甲酮通过亲核缩聚反应制备了一系列含全氟壬烯基的新型聚醚醚酮(PEEK-PFN-)。结果发现,所得共聚物的电学和热学性能因全氟壬烯基的摩尔比不同而有所差异。含5%摩尔比全氟壬烯基的聚醚醚酮(PEEK-PFN-5)在10 kHz时具有2.73的固有低介电常数和3.00×10的低介电损耗。另一种由聚醚醚酮和聚四氟乙烯制备的共混聚合物(PEEK/PTFE-5)在10 kHz时的介电常数为3.21,介电损耗为6.00×10。因此,在氟含量相同的情况下,PEEK/PTFE-5的介电损耗比PEEK-PFN-5高得多。PEEK-PFN-5还表现出优异的热稳定性,5%失重温度为436℃。与含氟量与PEEK-PFN-5相同的PEEK/PTFE-5(86.4°)相比,PEEK-PFN-5的疏水性略有增加,水滴接触角为89.7°。通过配备能谱仪的场发射扫描电子显微镜对膜表面的形貌和氟化物分布进行了表征。这些结果表明,与PEEK-PTFE-5相比,PEEK-PFN-5在膜顶表面的氟分布更均匀。