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Deformable High Loading Liquid Metal Nanoparticles Composites for Thermal Energy Management

机译:可变形的高负荷液态金属纳米颗粒复合材料热能管理

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The emergence of soft electronics has led to the need for thermal management with deformable material. Recent efforts have focused on incorporating EGaIn microparticles (approximate to 10(1) mu m) into elastomer forming a thermal conductive composites. However, the shape deformation and coalescence of EGaIn particles under mechanical stress often lead to parasitic electrical conduction, imposing limitations on its utilization in thermal management. Increasing the loading of EGaIn nanoparticles (20 vol%) often leads to brittleness of the composite. Herein, a strategy to obtain thermally conductive and soft elastomers with a high-volume ratio of EGaIn nanoparticles (44 vol%) is introduced. Surface modification of EGaIn nanoparticles with carboxylic acid terminated polydimethylsiloxane (COOH-PDMS-COOH) coupled with the in situ formation of a PDMS matrix by crosslinking with the surface-modified EGaIn nanoparticles leads to dense EGaIn nanoparticles in a PDMS matrix with effective thermal transport. Notably, despite the high-volume ratio of EGaIn nanoparticles in the elastomer, the composite maintains a low elastic modulus (6.91 kPa) and remains electrically insulating even under mechanical stress. In addition, a distinctive anisotropic thermal conductivity of the elastomer is established upon stretching. This elastomer can be utilized as a thermal interface layer for thermoelectric devices. The resulting thermoelectric performance has promise in applications such as wearable thermo-haptic or thermo-sensing devices.
机译:软电子的出现导致了具有可变形材料的热管理。最近的努力集中于将Egain微粒(近似为10(1)μm)掺入形成导热复合材料的弹性体中。然而,机械应力下的Egain颗粒的形状变形和聚结经常导致寄生电导电,对热管理中的利用率施加限制。增加Egain纳米颗粒的装载(& 20体积%)通常导致复合材料的脆性。这里,引入了具有高体积纳米颗粒(44体积%)的热导电和软弹性体的策略。通过与表面改性的Egainnacation纳米粒子交联通过交联通过交联偶合羧酸封端的聚二甲基硅氧烷(COOH-PDMS-COOH)与羧酸封端的聚二甲基硅氧烷(COOH-PDMS-COOH)与PDMS基质交联引起有效热传输的PDMS基质中的致密纳米颗粒。值得注意的是,尽管弹性体中的Egain纳米颗粒的高容量比,但是复合材料保持低弹性模量(6.91kPa),即使在机械应力下也保持电绝缘。此外,在拉伸时建立弹性体的独特各向异性导热率。该弹性体可用作热电装置的热界面层。由此产生的热电性能在诸如可穿戴的热触觉或热传感装置之类的应用中具有承诺。

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