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Significantly Enhanced Electromechanical Performance of PDMS Crosslinked PVDF Hybrids

机译:PDMS交联PVDF混合材料的机电性能显着提高

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摘要

Poly(vinylidene fluoride)-based ferroelectric polymers have large and tunable dielectric permittivity (εr), but rather high Young’s modulus (Y), which limits its electromechanical response when used as actuators. In this work, a silicone oligomer involving amino groups is employed to crosslink a non-crystallized poly(vinylidene fluoride-chlorotrifluoroethylene) matrix bearing double bonds (P(VDF-CTFE-DB)) via addition reaction. Thanks to the flexible silicone molecules, the modulus of the hybrids is reduced over 30% when compared with the pristine matrix. Most interestingly, the εr of the hybrids is improved to nearly 100% higher than that of the matrix when the silicone content reaches 30 wt %. This may be due to the dilution effect of silicone molecules, which favors macromolecular chain rearrangement and dipole orientation of the hybrids under an applied electric field. As a result, electric-field activated displacements of the above hybrid increases to 0.73 mm from 0.48 mm of the matrix under 60 MV/m. The maximum electric field-induced thickness strain increases from 1% of the matrix to nearly 3% of the crosslinked hybrid. This work may provide a facile strategy to fabricate PVDF-based hybrids with enhanced electromechanical performance under low activating voltage.
机译:基于聚偏二氟乙烯的铁电聚合物具有大且可调的介电常数(εr),但杨氏模量(Y)较高,这限制了其在用作致动器时的机电响应。在这项工作中,包含氨基的有机硅低聚物用于通过加成反应交联带有双键(P(VDF-CTFE-DB))的非结晶聚偏二氟乙烯-氯三氟乙烯基体。由于具有柔性有机硅分子,与原始基质相比,杂化体的模量降低了30%以上。最有趣的是,当有机硅含量达到30 wt%时,杂化体的εr比基质的εr高100%。这可能是由于硅酮分子的稀释作用所致,后者有利于杂化分子在施加电场下进行大分子链重排和偶极子取向。结果,在60MV / m下,上述混合体的电场激活位移从基质的0.48mm增加到0.73mm。电场引起的最大厚度应变从基质的1%增至交联杂化体的近3%。这项工作可以提供一种简便的策略来制造在低激活电压下具有增强的机电性能的基于PVDF的混合动力汽车。

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