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Thermal Transport in Soft PAAm Hydrogels

机译:软PAAm水凝胶中的热传递

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摘要

As the interface between human and machine becomes blurred, hydrogel incorporated electronics and devices have emerged to be a new class of flexible/stretchable electronic and ionic devices due to their extraordinary properties, such as softness, mechanically robustness, and biocompatibility. However, heat dissipation in these devices could be a critical issue and remains unexplored. Here, we report the experimental measurements and equilibrium molecular dynamics simulations of thermal conduction in polyacrylamide (PAAm) hydrogels. The thermal conductivity of PAAm hydrogels can be modulated by both the effective crosslinking density and water content in hydrogels. The effective crosslinking density dependent thermal conductivity in hydrogels varies from 0.33 to 0.51 Wm−1K−1, giving a 54% enhancement. We attribute the crosslinking effect to the competition between the increased conduction pathways and the enhanced phonon scattering effect. Moreover, water content can act as filler in polymers which leads to nearly 40% enhancement in thermal conductivity in PAAm hydrogels with water content vary from 23 to 88 wt %. Furthermore, we find the thermal conductivity of PAAm hydrogel is insensitive to temperature in the range of 25–40 °C. Our study offers fundamental understanding of thermal transport in soft materials and provides design guidance for hydrogel-based devices.
机译:随着人与机器之间的界面变得模糊,结合了水凝胶的电子产品和设备由于其非凡的性能(如柔软性,机械坚固性和生物相容性)而成为一类新的柔性/可拉伸电子和离子设备。但是,这些设备中的散热可能是一个关键问题,并且仍待探索。在这里,我们报告在聚丙烯酰胺(PAAm)水凝胶中的热传导的实验测量和平衡分子动力学模拟。 PAAm水凝胶的导热系数可以通过有效的交联密度和水凝胶中的水含量来调节。水凝胶中取决于交联密度的有效导热系数从0.33到0.51 Wm -1 K -1 不等,提高了54%。我们将交联效应归因于增加的传导途径与增强的声子散射效应之间的竞争。此外,水含量可以充当聚合物中的填料,这导致PAAm水凝胶的热导率提高近40%,其中水含量从23到88 wt%不等。此外,我们发现PAAm水凝胶的热导率对25–40°C的温度不敏感。我们的研究提供了对软材料中热传输的基本理解,并为基于水凝胶的设备提供了设计指导。

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