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Preparation of thermally conductive flexible liquid silicone rubber composites by magnetic field-induced self-assembly of Fe3O4@C

机译:磁场诱导自组装Fe3O4@C制备导热柔性液态硅橡胶复合材料

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摘要

Efficient heat dissipation is very crucial for the performance, service life, and reliability of modern electronic devices. It is very challenging to improve heat dissipation efficiency through innovative material structure design. Therefore, in the work, dopamine (PDA) is used to coat the surface of graphite (C) with its excellent surface coating modification ability, so that the C surface has oxygen-containing groups to change its electronegativity, and Fe2+ and Fe3+ in the solution are attracted to the surface of C, and then in situ redox reaction occurs on the surface of C to generate magnetic graphite (Fe3O4@C). Fe3O4@C is uniformly dispersed into liquid silicone rubber (LSR) by solution blending, and Fe3O4@C performs integral directional filling in the LSR under the action of magnetic field (B = 140 mT), thus preparing Fe3O4@C/LSR composites. Through magnetic field orientation, the thermal conductivity of Fe3O4@C/LSR composites reach 1.25 W/m center dot K when the content of Fe3O4@C is 100 phr, which is 410 higher than that of pure LSR (0.2447 W/m center dot K). Infrared thermal imaging test shows that Fe3O4@C/LSR composites has good heat dissipation performance, Fe3O4@C/LSR composites have shown great potential in terms of flexibility and high thermal conductivity.
机译:高效散热对于现代电子设备的性能、使用寿命和可靠性至关重要。通过创新的材料结构设计来提高散热效率是非常具有挑战性的。因此,在工作中,利用多巴胺(PDA)以其优异的表面涂层改性能力涂覆在石墨(C)表面,使C表面具有含氧基团改变其电负性,溶液中的Fe2+和Fe3+被吸引到C表面,然后在C表面发生原位氧化还原反应,生成磁性石墨(Fe3O4@C)。Fe3O4@C通过溶液共混均匀分散到液态硅橡胶(LSR)中,Fe3O4@C磁场作用下(B = 140 mT)在液态硅橡胶中进行整体定向填充,从而制备出Fe3O4@C/LSR复合材料。当Fe3O4@C含量为100 phr时,通过磁场取向,Fe3O4@C/LSR复合材料的热导率达到1.25 W/m中心点K,比纯LSR(0.2447 W/m中心点K)高410%。红外热成像测试表明,Fe3O4@C/LSR复合材料具有良好的散热性能,Fe3O4@C/LSR复合材料在柔韧性和高导热性方面显示出巨大的潜力。

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