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A polyurethane-based elastomeric nanocomposite with a high dielectric constant

机译:具有高介电常数的聚氨酯基弹性体纳米复合材料

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摘要

To increase the electric energy density of dielectric elastomer substantially, high dielectric constant nanocomposites were developed using polyurethane (PU) as matrix and copper phthalocyanine oligomer (CuPc)—a high dielectric constant organic semiconductor—as filler. Transmission electron microscope (TEM)-observed morphologies revealed that the sizes of CuPc particles in nanocomposite of PU chemically attached with 8.78 vol% of CuPc were in the range of 10-20 nm, much smaller than the sizes (250-600 nm) in the physical blend of PU with the same volume fraction of CuPc. At 100 Hz, the nanocomposite film exhibited a dielectric constant of 391, representing more than 60-fold increase with respect to the pure PU. The enhanced dielectric response of the nanocomposite makes it possible to induce a high electromechanical response under a much reduced electric field (a strain of 17.7 % was achieved under a field of 10 V/um).
机译:为了显着提高介电弹性体的电能密度,人们开发了以聚氨酯(PU)为基质和铜酞菁低聚物(CuPc)(一种高介电常数有机半导体)作为填充剂的高介电常数纳米复合材料。透射电子显微镜(TEM)观察到的形貌显示,化学上附着有8.78体积%CuPc的PU纳米复合材料中CuPc颗粒的尺寸在10-20 nm范围内,比在250 nm至250 nm的尺寸小得多。 PU与相同体积的CuPc的物理混合物。在100 Hz时,纳米复合膜的介电常数为391,相对于纯PU增长60倍以上。纳米复合材料增强的介电响应使得可以在大大减小的电场(在10 V / um的电场下获得17.7%的应变)下引发高机电响应。

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