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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly improved electro-actuation of dielectric elastomers by molecular grafting of azobenzenes to silicon rubber
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Highly improved electro-actuation of dielectric elastomers by molecular grafting of azobenzenes to silicon rubber

机译:通过将偶氮苯分子接枝到硅橡胶上来高度改进电介质弹性体的电致动

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摘要

Herein we report a novel and efficient approach to fabricate dielectric elastomers with enhanced dielectric constant and high dielectric strength. Azobenzenes with strong permanent dipole moments were synthesized to co-crosslink with hydroxyl-terminated polydimethylsiloxane through a simple one-step process, which realized a type of robust, molecularly homogenous silicone rubber (SR). The chemical structure, dielectric and mechanical properties of the resultant azo-g-PDMS elastomers with azobenzne contents ranging from 0 to 13.2 wt% were carefully characterized. The dielectric constant of azo-g-PDMS films at 1 kHz increased from 2.72 to 4.88 with the increase of azobenzene contents. By grafting with 4.0 wt% of azobenzene, the breakdown strength of azo-g-PDMS reached 89.4 V mu m(-1), which is 36% higher than that of pristine SR. The electric field induced deformation of silicone rubber could be enhanced by grafting with azobenzenes. The azo-g-PDMS film with 7.1 wt% of azobenzenes displayed a maximum area strain of 17%. Meanwhile, the azo-g-PDMS films exhibited a short response time (about 0.5 s) to the change in the electric field. Some prototype electromechanical actuators based on this type of azo-g-PDMS films were fabricated, demonstrating that the azo-g-PDMS dielectric elastomer is a very promising candidate for artificial muscle applications.
机译:在这里,我们报告了一种新颖而有效的方法来制造具有增强的介电常数和高介电强度的介电弹性体。通过简单的一步法合成了具有强永久偶极矩的偶氮苯与羟基封端的聚二甲基硅氧烷共交联,从而实现了一种坚固的分子均质硅橡胶(SR)。仔细表征了所得偶氮苯含量为0至13.2重量%的偶氮-g-PDMS弹性体的化学结构,介电性能和机械性能。随着偶氮苯含量的增加,偶氮-g-PDMS薄膜在1 kHz时的介电常数从2.72增加到4.88。通过接枝4.0 wt%的偶氮苯,偶氮-g-PDMS的击穿强度达到89.4 Vμm(-1),比原始SR的击穿强度高36%。通过偶氮苯接枝可以增强电场引起的硅橡胶变形。具有7.1重量%的偶氮苯的偶氮-g-PDMS膜显示出最大面积应变为17%。同时,偶氮-g-PDMS膜表现出对电场变化的短响应时间(约0.5s)。制造了一些基于这种azo-g-PDMS薄膜的原型机电致动器,表明azo-g-PDMS介电弹性体是人造肌肉应用中非常有希望的候选者。

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