Ma Yan, Xiang Yanli, Zhu Jingyi, Li Jian, Wang Chenyi, Zhao Xiaoyan
Jiangsu Key Laboratory of Environmentally Friendly Polymeric Materials, School of Materials Science and Engineering, Changzhou University, Changzhou 213164, Jiangsu, China.
State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai 200438, China.
ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46834-46843. doi: 10.1021/acsami.4c11352. Epub 2024 Aug 20.
Poly(aryl ether) materials are used in a wide range of applications in the communications and microelectronics fields for their outstanding mechanical and dielectric properties. In order to further improve the comprehensive performance, this work reports a series of cross-linkable poly(aryl ether)s (UCL-PAEn) containing trifluoroisopropyl and perfluorobiphenyl structures using 2,2-bis(4-hydroxyphenyl)hexafluoropropane, 2,2'-diallyl bisphenol A, and perfluorobiphenyl as starting materials. Their chemical structures and the effect of changes in the allyl content on the properties are thoroughly investigated. Owing to the introduction of fluorine atoms and cross-linked networks, the cross-linked poly(aryl ether) films present low dielectric constants ( = 1.93-2.24 at 1 MHz), low water absorption (0.14% -0.25%), and hydrophobic film surfaces (94.3-99.4°). Additionally, because of the presence of cross-linked networks, the CL-PAEn films exhibit superior thermal stability, with the 5% weight loss temperatures all above 445 °C and the maximum thermal decomposition rate temperatures all above 550 °C. The cross-linked films also demonstrate excellent mechanical properties, with tensile strength in the range of 57.1 -146.7 MPa and tensile modulus in the range of 1.8 GPa-4.5 GPa.
聚芳醚材料因其出色的机械性能和介电性能而广泛应用于通信和微电子领域。为了进一步提高综合性能,本工作报道了一系列含三氟异丙基和全氟联苯结构的可交联聚芳醚(UCL-PAEn),以2,2-双(4-羟基苯基)六氟丙烷、2,2'-二烯丙基双酚A和全氟联苯为起始原料。深入研究了它们的化学结构以及烯丙基含量变化对性能的影响。由于氟原子的引入和交联网络的形成,交联聚芳醚薄膜具有低介电常数(1 MHz时为1.93 - 2.24)、低吸水率(0.14% - 0.25%)以及疏水的薄膜表面(94.3 - 99.4°)。此外,由于交联网络的存在,CL-PAEn薄膜表现出优异的热稳定性,5%失重温度均高于445°C,最大热分解速率温度均高于550°C。交联薄膜还具有出色的机械性能,拉伸强度在57.1 - 146.7 MPa范围内,拉伸模量在1.8 GPa - 4.5 GPa范围内。