Gu Huiling, Huang Ji, Li Na, Yang Hua, Wang Yin, Zhang Yang, Dong Chengjun, Chen Gang, Guan Hongtao
School of Materials and Energy, Yunnan University, Kunming 650091, China.
Department of Materials Science and Engineering, Beijing Technology and Business University, Beijing 100048, China.
Nanomaterials (Basel). 2022 Aug 5;12(15):2698. doi: 10.3390/nano12152698.
The moderation of the dielectric properties of polymer composites and their environmental stability need to be considered comprehensively in the design of microwave-absorbing materials. In this work, polypyrrole/polystyrene (PPy/PS) composited particles were synthesized through a facile in situ bulk polymerization procedure. The PS component can be modulated conveniently by controlling the polymerization time. FTIR and Raman analyses disclosed that the PS component was immobilized in PPy via covalent bonds. The electromagnetic characterization results indicated that the dielectric properties and, thus, the microwave absorption could be controlled when the styrene polymerization was prolonged from 6 h (PPy-6) to 19 h (PPy-19). The composite PPy-19 displayed an optimal reflection loss of -51.7 dB with a matching thickness of 3.16 mm, and the effective absorption bandwidth (EAB) even reached 5.8 GHz at 2.4 mm. The PS component endowed PPy/PS composites with more robust environmental stability than homogeneous PPy. After being exposed to air for 365 days and hydrothermally treated at 100 °C for 12 h, PPy-19 still exhibited a reflection loss superior to -20 dB. The present work provides a new insight into the adjustment of the electromagnetic properties of PPy composites to fabricate high-performance microwave absorbers with superior environmental stability.
在微波吸收材料的设计中,需要综合考虑聚合物复合材料介电性能的调控及其环境稳定性。在本工作中,通过简便的原位本体聚合法合成了聚吡咯/聚苯乙烯(PPy/PS)复合粒子。通过控制聚合时间可以方便地调节PS组分。傅里叶变换红外光谱(FTIR)和拉曼分析表明,PS组分通过共价键固定在PPy中。电磁特性结果表明,当苯乙烯聚合时间从6小时(PPy-6)延长至19小时(PPy-19)时,介电性能以及微波吸收性能均可得到控制。复合粒子PPy-19在匹配厚度为3.16毫米时显示出-51.7分贝的最佳反射损耗,在2.4毫米时有效吸收带宽(EAB)甚至达到5.8吉赫兹。PS组分赋予PPy/PS复合材料比均相PPy更强的环境稳定性。在空气中暴露365天并在100℃水热处理12小时后,PPy-19仍表现出优于-20分贝的反射损耗。本工作为调整PPy复合材料的电磁性能以制备具有优异环境稳定性的高性能微波吸收剂提供了新的思路。