以双酚A(BPA)、叔丁基对苯二酚(TBHQ)、4,4′-二氯二苯砜(DCDS)为共聚单元,在分子主链侧基中引入大体积疏水性的叔丁基,通过调整BPA与DCDS的比例制备了系列聚芳醚砜薄膜,并对薄膜进行了红外表征和性能测试。结果表明:系列薄膜综合性能优异,介电常数(1MHz,2.76~3.05)、介电损耗(<0.75%)和吸水率(0.61%~0.84%)均较低,在力学、热学、光学等性能方面优势显著。
Using bisphenol A(BPA),tert-butylhydroquinone(TBHQ) and 4,4′-dichlorodiphenyl sulfone (DCDS) as copolymer units,a large volume hydrophobic tert-butyl group was introduced into the molecular backbone group.A series of polyaryl sulfone films were prepared by adjusting the ratio of BPA and DCDS.Infrared characterization and performance testing were performed on the films.The results shown that the films had excellent comprehensive properties,low dielectric constant (1MHz,2.76~3.05),dielectric loss (<0.75%) and water absorption (0.61~0.84%),and significant advantages in mechanical,thermal and optical properties.
[1] 迟煦.中欧应加强5G合作共推数字经济发展[J].通信世界,2020(27):11.
[2] 周琦.5G移动通信技术及发展趋势展望[J].电子世界,2020(19):4-5.
[3] Drubin C.5G Continues progress despite COVID-19[J].Microwave Journal,2020,63(8):39.
[4] Zhang Z Z,Mao Y L,Zhu L.5G mobile communication test technology progress and challenges[J].Journal of Data Acquisition & Processing,2019,34(6):974-985.
[5] 杨光.他山之石:毫米波将开启5G发展新阶段[J].通信世界,2020(26):22-23.
[6] Dateki T,Seki H,Minowa M.From LTE-advanced to 5G:mobile access system in progress[J].Fujitsu Scientific & Technical Journal,2016,52(2):97-102.
[7] 孟月.5G“新基建”赋能 北京互联网加速发展[J].通信世界,2020(25):12-13.
[8] Zhang J H,Tang P,Tian L.6-100 GHz research progress and challenges from a channel perspective for fifth generation (5G) and future wireless communication[J].Science CHINA-Information Sciences,2017,60(8):10.1007/s11432-016-9144-x.
[9] 皇甫梦鸽,李一丹,张燕,等.面向5G应用需求的低介电高分子材料研究与应用进展[J].绝缘材料,2020,53(8):1-9.
[10] 陶永亮.液晶聚合物LCP在5G产品中的应用[J].橡塑技术与装备,2020,46(12):32-35.
[11] 虞鑫海.一种耐高温BAHPFP型层压板及其制备方法[P].CN105111717A,2015-12-02.
[12] 虞鑫海.一种耐高温BAHPFP型胶粘剂及其制备方法[P].CN105112002A,2015-12-02.
[13] 李小兰.含氟聚酰亚胺薄膜的制备及其结构与性能研究[D].北京:北京化工大学,2019.
[14] 肖超.三维导热网络的构筑及其环氧树脂复合材料性能研究[D].合肥:中国科学技术大学,2020.
[15] 赵越.聚酰亚胺及其复合薄膜的制备[D].上海:上海应用技术大学,2018.
[16] 王杰鹏,张爱国,朱艳兵,等.聚砜膜研究进展[J].山东化工,2015,44(15):63-65.
[17] 胡任之.聚砜树脂的发展动态[J].上海化工,2013,38(4):22-26.
[18] 高雁伟.新型联苯聚芳醚砜的合成及性能研究[D].长春:吉林大学,2020.
[19] 吴冯,虞鑫海,吕伦春,等.微特电机用耐高温星型支化聚酰亚胺薄膜研究[J].热固性树脂,2018,33(5):20-25.
[20] 虞鑫海,金自然,高欣,等.1,4-双(4-氨基苯氧基)-2,5-二特丁基苯及其聚酰亚胺的合成与性能研究[J].化学与粘合,2008(6):21-25.
[21] 魏艳凤.含氟硅疏水低介电聚芳醚砜树脂的制备及性能研究[D].长春:吉林大学,2018.