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Design of Ionic-Liquid-Based Hybrid Polymer Materials with a Magnetoactive and Electroactive Multifunctional Response

机译:具有磁热和电活性多功能反应的离子 - 液体杂交聚合物材料的设计

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Multifunctional materials with sensor and actuator capabilities play an increasing role in modern technology. In this scope, hybrid materials with magnetic sensing and an electromechanical actuator response based on magnetic ionic liquids (MILs) and the polymer poly(vinylidene fluoride) (PVDF) have been developed. MILs comprising different cation alkyl chain lengths [C(n)mim](+) and sharing the same anion [FeCl4](-) were incorporated at 20 wt % into the PVDF matrix and the morphological, physical, chemical, and functional properties of the materials were evaluated. An increasing IL alkyl chain length leads to the formation of a porous structure, together with an increase in the electroactive PVDF beta-phase content of the polymer and a decrease in the crystallinity degree and thermal stability. The magnetic susceptibility of the [C(n)mim][FeCl4]/PVDF films reveals a paramagnetic behavior. The multifunctional response is characterized by a magnetoionic response that decreases with increasing IL alkyl chain length, the highest magnetoionic coefficient (1.06 +/- 0.015 V cm(-1) Oe(-1)) being observed for [C(2)mim][FeCl4]/PVDF. The electromechanical actuator response is characterized by a highest displacement of 1.1 mm for the [C(4)mim][FeCl4]/PVDF film by applying a voltage of 4 V at a frequency of 100 mHz. Further, their solution processing makes these multiresponsive materials compatible with additive manufacturing technologies.
机译:具有传感器和执行器功能的多功能材料在现代技术中发挥着越来越大的作用。在该范围中,已经开发出具有磁感测的混合材料和基于磁离子液体(MIL)和聚合物聚(偏二氟乙烯)(PVDF)的机电致动器响应。包含不同阳离子烷基链长度[C(n)mim](+)和共享相同阴离子[FECL4]( - )的密耳掺入20重量%的PVDF基质和形态学,物理,化学品和功能性质中评估材料。增加的IL烷基链长度导致多孔结构的形成,以及聚合物的电活性PVDFβ相含量的增加和结晶度和热稳定性的降低。 [C(n)mim] [FECL4] / PVDF膜的磁化率揭示了顺磁性行为。多功能响应的特征在于磁离子响应,其随着IL烷基链长度的增加而降低,对于[C(2)MIM],观察到最高的磁流量系数(1.06 +/- 0.015Vcm(-1)OE(-1)) [FECL4] / PVDF。机电致动器响应的特征在于,通过以100MHz的频率施加4V的电压,其特征在于,对于[C(4)MIM] [FECL4] / PVDF膜的最高位移为1.1mm。此外,它们的解决方案处理使得这些多型材料与添加剂制造技术相容。

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