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Enhanced Electric Polarization and Polar Switching of Dipolar Aromatic Liquids Confined in Supramolecular Gel Networks

机译:限制在超分子凝胶网络中的偶极芳香液体的增强电极化和极性转换

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摘要

Dipolar aromatic liquids confined in the interstitial domains of chiral organogels show significantly enhanced electric polarization, as compared with those of pure liquids alone or organogels formed with nonpolar liquids. Intriguingly, nitrobenzene gels showed a supramolecular polar switching phenomenon; i.e., hysteresis in the polarization (P)—electric field (E) curves was observed for the gel above the melting point of the solvent. This indicates that the nitrobenzene molecules confined in the chiral nanofibrous gel networks exert macroscopic polarization whose direction is inversed depending on the direction of the external electric field. The anomalously enhanced electric polarization and polar switching phenomenon of supramolecular gels in varied solvents are scrutinized by the positive-up—negative-down (PUND) measurements, and the interactions between the gel nanofibers and the polar solvent molecules play crucial roles for the emergence of the polar switching phenomenon. This work presents for the first time that dipolar liquid molecules filling the interstitial space of supramolecular gels exhibit a significant confinement effect. It provides a new perspective to design electric-field-responsive soft materials based on the functional liquid domains confined in their porous networks.
机译:与单独的纯液体或由非极性液体形成的有机凝胶相比,手性有机凝胶的间隙区域内的偶极芳香族液体显示出明显增强的极化作用。有趣的是,硝基苯凝胶显示出超分子极性转换现象。即,在高于溶剂熔点的凝胶上观察到极化(P)-电场(E)曲线中的滞后。这表明封闭在手性纳米纤维凝胶网络中的硝基苯分子发挥宏观极化作用,其方向取决于外部电场的方向。通过正-负-负(PUND)测量来检查在各种溶剂中超分子凝胶的异常增强的极化和极性转换现象,并且凝胶纳米纤维和极性溶剂分子之间的相互作用对于产生纳米级凝胶起着至关重要的作用。极性切换现象。这项工作首次提出,填充超分子凝胶间隙空间的偶极液体分子表现出显着的封闭作用。它提供了一个新的观点,可以基于有限的多孔网络中的功能性液体域来设计电场响应性软材料。

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