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Graphene encapsulated rubber latex composites with high dielectric constant, low dielectric loss and low percolation threshold

机译:具有高介电常数,低介电损耗和低渗透阈值的石墨烯包胶橡胶胶乳复合材料

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摘要

A dielectric composite with high dielectric constant, low dielectric loss and low percolation threshold was prepared by using the combined strategy of encapsulating of graphene oxide nanosheets (GONS) on carboxylated nitrile rubber (XNBR) latex particles and the in situ thermal reduction in GONS at a moderate temperature. The encapsulation of GONS on XNBR latex particles was mainly realized via the hydrogen bonding interactions between GONS and XNBR during latex mixing. A segregated graphene network was obtained at a low content of thermally reduced graphene (TRG), resulting in a low percolation threshold (0.25 vol.%). The dielectric constant at 100 Hz obviously increased from 23 for pure XNBR to 2211 and 5542 for the composite with 0.5 vol.% and 0.75 vol.% of TRG, respectively. The dielectric loss of the composites retained at a low value (less than 1.5). Meanwhile, the elastic modulus only slightly increased with the presence of 0.1-0.5 vol.% of TRG, keeping the good flexibility of the dielectric composites. This study provides a simple, low-cost and effective method to prepare high performance dielectric composites, facilitating the wide application of dielectric materials.
机译:利用石墨烯纳米片(GONS)在羧化丁腈橡胶(XNBR)胶乳颗粒上的包裹并在室温下GONS的原位热还原的组合策略,制备了具有高介电常数,低介电损耗和低渗透阈值的介电复合材料。温度适中。 GONS在XNBR胶乳颗粒上的包封主要是通过胶乳混合过程中GONS和XNBR之间的氢键相互作用实现的。在低含量的热还原石墨烯(TRG)下获得了隔离的石墨烯网络,从而导致较低的渗透阈值(0.25 vol。%)。 100 Hz的介电常数从纯XNBR的23明显增加到TRG为0.5体积%和0.75体积%的复合材料的2211和5542。复合材料的介电损耗保持在较低的值(小于1.5)。同时,当TRG为0.1-0.5体积%时,弹性模量仅略微增加,从而保持了介电复合材料的良好挠性。这项研究提供了一种简单,低成本,有效的方法来制备高性能电介质复合材料,从而促进了电介质材料的广泛应用。

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