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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >High performance dielectric elastomers by partially reduced graphene oxide and disruption of hydrogen bonding of polyurethanes
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High performance dielectric elastomers by partially reduced graphene oxide and disruption of hydrogen bonding of polyurethanes

机译:通过部分还原氧化石墨烯和破坏聚氨酯的氢键形成高性能介电弹性体

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Thermally reduced graphene oxide (TRG)/thermoplastic polyurethanes (TPU) dielectric elastomer with high dielectric constant (k), low dielectric loss and greatly improved actuated strain at low electric field was prepared by solution blending followed by in situ thermal reduction. The results showed that a good dispersion and alignment of TRG in the TPU matrix was obtained. The k at 10(3) Hz was sharply increased from 7 for pure TPU to 1875 for the composite with 2 vol. % of TRG because of the partial restoration of graphite structure and the great increase in dipole polarizability of TPU caused by the disruption of hydrogen bonds of TPU chains. The dielectric loss at 10(3) Hz of the composite with 2 vol. % of TRG remained low (0.43). Despite of the increase in elastic modulus with the increase in the content of TRG, the great increase in k lead to the great increase in electromechanical sensitivity (beta). As a result, a 106 times increase in beta at 10(3) Hz and 17 times increase in actuated strain at low electric field (250 V/mm) were achieved by adding 2.0 vol% of TRG. This study provides a simple and effective method for the improvement of actuated strain at low electric fields through partial reduction of graphene oxide and the disruption of hydrogen bonds in TPU, facilitating the applications of dielectric elastomers in the biological and medical fields, where a low electric field is required. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过溶液共混然后原位热还原,制备了具有高介电常数(k),低介电损耗和在低电场下大大改善的致动应变的热还原氧化石墨烯(TRG)/热塑性聚氨酯(TPU)介电弹性体。结果表明,TRG在TPU基质中具有良好的分散性和排列性。 10(3)Hz处的k从纯TPU的7急剧增加到2体积的复合材料的1875。由于石墨结构的部分恢复以及TPU链氢键的破坏导致TPU的偶极极化率大大提高,因此TRG的百分含量为%。具有2 vol。%的复合材料在10(3)Hz的介电损耗。 TRG的百分比仍然很低(0.43)。尽管弹性模量随TRG含量的增加而增加,但k的极大增加导致机电灵敏度(β)大大增加。结果,通过添加2.0%(体积)的TRG,在10(3)Hz时β值增加了106倍,在低电场(250 V / mm)下的驱动应变增加了17倍。这项研究提供了一种简单有效的方法,可通过部分还原氧化石墨烯和破坏TPU中的氢键来改善低电场下的致动应变,有利于介电弹性体在生物和医学领域中的应用,因为低电场必填字段。 (C)2014 Elsevier Ltd.保留所有权利。

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