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具有固液互穿导热网络的氟化石墨烯导热水凝胶

Fluorinated Graphene Thermally Conductive Hydrogel with a Solid-Liquid Interpenetrating Heat Conduction Network.

作者信息

Tian Rui, Jia Xiaohua, Bai Yunfei, Yang Jin, Song Haojie

机构信息

School of Materials Science & Engineering, Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, Shaanxi University of Science & Technology, Xi'an, Shaanxi 710021, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Jan 10;16(1):1451-1460. doi: 10.1021/acsami.3c14478. Epub 2023 Dec 19.

Abstract

Hydrogels with excellent mechanical flexibility are widely used in flexible electronic devices. However, it is difficult to meet further applications of high-power integrated flexible electronics as a result of their low thermal conductivity. Herein, highly thermally conductive composite hydrogels with a solid-liquid interpenetrating thermal conductivity network are constructed by aromatic polyamide nanofibers (ANF) and fluorinated graphene (FG) reinforced poly(vinyl alcohol) (PVA) and cross-linked by tannic acid (TA) solution immersion to obtain a hydrogel with a double cross-linked network. The PVA-ANF-FG3-11.1% composite hydrogel exhibits good mechanical properties compared to PVA-ANF, with a tensile modulus of up to 0.89 MPa, a tensile strength of up to 1.23 MPa, and an energy of rupture of up to 3.45 MJ cm, which is mainly attributed to the multihydrogen bonding interactions in the composite hydrogel. In addition, the friction coefficient of the PVA-ANF-FG3-11.1% composite hydrogel is 0.178, making it suitable for use in high-friction coefficient applications. The thermal conductivity of the PVA-ANF-FG3-11.1% composite hydrogel is 1.42 W m K, which is attributed to the synergistic effect of the solid thermal conductivity network and the liquid convection network, resulting in a high thermal conductivity of the composite hydrogel. The high thermal conductivity of the PVA-ANF-FG3-11.1% composite hydrogel shows great potential for flexible wearable electronics and cooling paste applications.

摘要

具有优异机械柔韧性的水凝胶广泛应用于柔性电子器件。然而,由于其低导热性,难以满足高功率集成柔性电子产品的进一步应用。在此,通过芳香族聚酰胺纳米纤维(ANF)和氟化石墨烯(FG)增强聚(乙烯醇)(PVA)构建具有固液互穿导热网络的高导热复合水凝胶,并通过单宁酸(TA)溶液浸渍交联,以获得具有双交联网络的水凝胶。与PVA-ANF相比,PVA-ANF-FG3-11.1%复合水凝胶表现出良好的机械性能,拉伸模量高达0.89MPa,拉伸强度高达1.23MPa,断裂能高达3.45MJ/cm,这主要归因于复合水凝胶中的多氢键相互作用。此外,PVA-ANF-FG3-11.1%复合水凝胶的摩擦系数为0.178,适用于高摩擦系数应用。PVA-ANF-FG3-11.1%复合水凝胶的导热率为1.42W/(m·K),这归因于固体导热网络和液体对流网络的协同效应,导致复合水凝胶具有高导热率。PVA-ANF-FG3-11.1%复合水凝胶的高导热率在柔性可穿戴电子产品和散热膏应用中显示出巨大潜力。

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