Lan Di, Wang Yue, Wang Youyong, Zhu Xiufang, Li Haifeng, Guo Xiaoming, Ren Juanna, Guo Zhanhu, Wu Guanglei
School of Materials Science and Engineering, Hubei University of Automotive Technology, Shiyan 442002, PR China.
School of Materials Science and Engineering, Hubei University of Automotive Technology, Shiyan 442002, PR China.
J Colloid Interface Sci. 2023 Dec;651:494-503. doi: 10.1016/j.jcis.2023.08.019. Epub 2023 Aug 6.
In the field of electromagnetic (EM) wave absorption, intrinsic conductive polymers with conjugated long-chain structures, such as polyaniline (PANI) and polypyrrole (PPy), have gained widespread use due to their remarkable electrical conductivity and loss ability. However, current research in this area is limited to macroscopic descriptions of the absorption properties of these materials and the contribution of various components to the absorption effect. There has been insufficient exploration of the impact mechanisms of polymer aggregation states on the material's absorption performance and mechanism. To address this, a series of flexible PANI sponge absorbers with different molecular weights and aggregation states were prepared. By carefully controlling the crystallinity and other aggregation characteristics of PANI through the adjustment of its preparation conditions, we were able to influence its electrical conductivity and electromagnetic parameters, thereby achieving control over the material's absorption properties. The resulting PANI sponge absorbers exhibited an effective absorption bandwidth (EAB) that covered the entire X-band at a thickness of 3.2 mm. This study comprehensively explores the absorption mechanisms of conductive polymer absorbers, starting from the microstructure of PANI, and providing a more complete theoretical support for the research and promotion of polymer absorbers.
在电磁波吸收领域,具有共轭长链结构的本征导电聚合物,如聚苯胺(PANI)和聚吡咯(PPy),因其卓越的导电性和损耗能力而得到广泛应用。然而,目前该领域的研究仅限于对这些材料吸收特性的宏观描述以及各种成分对吸收效果的贡献。对于聚合物聚集态对材料吸收性能和机理的影响机制,尚未进行充分探索。为解决这一问题,制备了一系列具有不同分子量和聚集态的柔性聚苯胺海绵吸收体。通过调整聚苯胺的制备条件,精心控制其结晶度和其他聚集特性,我们能够影响其导电性和电磁参数,从而实现对材料吸收性能的控制。所得的聚苯胺海绵吸收体在厚度为3.2毫米时表现出覆盖整个X波段的有效吸收带宽(EAB)。本研究从聚苯胺的微观结构出发,全面探索了导电聚合物吸收体的吸收机理,为聚合物吸收体的研究和推广提供了更完整的理论支持。