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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Nonmonotonic Influence of Size of Quaternary Ammonium Countercations on Micromorphology, Polarization, and Electroresponse of Anionic Poly(ionic liquid)s
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Nonmonotonic Influence of Size of Quaternary Ammonium Countercations on Micromorphology, Polarization, and Electroresponse of Anionic Poly(ionic liquid)s

机译:季铵铵尺寸对阴离子聚(离子液体)微晶,偏振和电响应的影响

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The size influence of quaternary ammonium countercations in poly[4-styrenesulfonyl(trifluoromethylsulfonyl)imide][tetraalkylammonium] (P[STFSI][Nnnnn], n = 1, 2, and 3) poly(ionic liquid)s on dielectric polarization and the stimuli-responsive electrorheological effect is investigated by dielectric spectroscopy and rheology, and the microstructure-level understanding behind the influence is analyzed by Raman and X-ray scattering spectra. The size influence of quaternary ammonium cations is found to be nonmonotonic. The largest electrorheological effect accompanied by best polarization properties is demonstrated in P[STFSI][N2222]. Raman spectra and activation energy measurements demonstrate that the nonmonotonic influence originates from the fact that, compared to small N1111(+) and large N3333(+), intermediate N2222(+) as countercations can contribute a higher mobile ion number and lower activation energy barrier of ion dissociation and motion. But the experimental values of activation energy are not consistent with theoretically calculated values by considering the ion pair electrostatic potential and elastic force contribution of the matrix. By X-ray scattering and diffraction characterizations, it is clarified that the nonmonotonic influence and the inconsistency of activation energy originate from the size influence of Nnnnn(+) on the micromorphology of P[STFSI][Nnnnn]. Compared to the semicrystalline structure of P[STFSI][N1111] and the ionic aggregation structure of P[STFSI][N3333], the relatively uniform amorphous structure of P[STFSI][N2222] may be responsible for its lower activation energy barrier of ion motion. This study further provides insights into the design and preparation of future poly(ionic liquid)-based electrorheological materials by considering not only molecular structure but also micromorphology.
机译:季铵抗衡的聚大小影响[4- styrenesulfonyl(三氟甲基磺酰基)亚胺] [四烷基铵](P [STFSI] [NNNNN]中,n = 1,2,和3)聚(离子性液体)S于电介质极化和刺激响应电流变效应是由介电谱和流变学研究,并且后面的影响微结构级理解通过拉曼光谱和X射线散射光谱进行分析。季铵阳离子的大小影响被发现是单调的。伴随最佳的偏振特性的最大电流变效应是体现在P [STFSI] [N2222]。拉曼光谱和活化能量测量表明,由以下事实的非单调影响起源,相对于小N1111(+)和大N3333(+),中间N2222(+)作为抗衡阳离子可有助于较高的移动离子数目和较低的活化能量势垒的离子解离和运动。但活化能的实验值是不通过考虑基体的离子对的静电势和弹性力的贡献与理论计算值是一致的。通过X射线散射和衍射表征,它是澄清,非单调影响和活化能的不一致性从NNNNN(+)的大小影响上P [STFSI] [NNNNN]的微观起源。相比P [STFSI] [N1111]的半结晶结构和P [STFSI] [N3333],P [STFSI] [N2222]的相对均匀的无定形结构可以负责的其较低的活化能量势垒的离子聚集结构离子运动。这项研究还提供了见解设计和制备未来聚(离子性液体)通过不仅考虑分子结构,而且微形态为基础的电流变材料。

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