Agafonov Alexander V, Kraev Anton S, Egorova Anastasia A, Baranchikov Alexander E, Kozyukhin Sergey A, Ivanov Vladimir K
Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 153045 Ivanovo, Russia.
Department of Chemistry, National Research Tomsk State University, 634050 Tomsk, Russia.
Polymers (Basel). 2020 Nov 27;12(12):2810. doi: 10.3390/polym12122810.
For the first time, electroactive nanocomposite elastomers based on polydimethylsiloxane and filled with rod-like α-MnO nanoparticles have been obtained. The curing of the filled elastomer in an electric field, resulting in the ordering of the α-MnO particles, had a significant effect on the degree of polymer crosslinking, as well as on the electrorheological characteristics of the nanocomposites obtained through this process, namely the values of the storage and loss moduli. The dielectric spectra of filled elastomers in the frequency range 25-10 Hz were analysed in terms of interfacial relaxation processes. It has been shown, for the first time, that the application of an electric field leads to a decrease in the value of the Payne effect in composite elastomers. Analysis of the rheological effect in the obtained materials has demonstrated the possibility of designing highly efficient electrorheological elastomers that change their elastic properties by 4.3 times in electric fields of up to 2 kV/mm.
首次制备了基于聚二甲基硅氧烷并填充棒状α - MnO纳米颗粒的电活性纳米复合弹性体。在电场中填充弹性体的固化过程导致α - MnO颗粒有序排列,这对聚合物交联程度以及通过该过程获得的纳米复合材料的电流变特性(即储能模量和损耗模量的值)产生了显著影响。根据界面弛豫过程分析了填充弹性体在25 - 10 Hz频率范围内的介电谱。首次表明,施加电场会导致复合弹性体中佩恩效应的值降低。对所得材料流变效应的分析表明,有可能设计出高效的电流变弹性体,在高达2 kV/mm的电场中其弹性性能可改变4.3倍。