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使用多孔石墨片和紫外光固化压敏胶粘剂制备的导热薄膜

Thermally Conductive Film Fabricated Using Perforated Graphite Sheet and UV-Curable Pressure-Sensitive Adhesive.

作者信息

Lee Hee-Jin, Lim Gayoung, Yang Eunseong, Kim Young-Seok, Kwak Min-Gi, Kim Youngmin

机构信息

Display Research Center, Korea Electronics Technology Institute, 25 Saenariro, Bundang-gu, Seongnam 13509, Korea.

出版信息

Nanomaterials (Basel). 2021 Jan 3;11(1):93. doi: 10.3390/nano11010093.

Abstract

Thermally conductive films play a crucial role in expanding the lifetime of electronics by dissipating concentrated heat to heatsinks. In this work, a thermally conductive film (g-TC film) was manufactured using a perforated graphite sheet (p-GS) and a UV-curable pressure-sensitive adhesive (PSA) by lamination. A novel UV-curable PSA was prepared by incorporating a UV-curable abietic acid ester into a PSA composition. The UV-curable PSA became a tack-free film upon UV irradiation; thus, a flexible g-TC film with a 52-μm thickness was obtained. The defects in the g-TC film caused by air bubbles were removed by treating the p-GS with oxygen plasma. As the UV-cured PSA made a joint through the holes in the p-GS, cleavage of the graphite was not observed after 10,000 U-folding test cycles with a folding radius of 1 mm. The calculated in-plane thermal conductivity of the fabricated g-TC film was 179 W∙mK, which was stable after the U-folding tests.

摘要

导热薄膜通过将集中的热量散发到散热器,在延长电子产品寿命方面发挥着关键作用。在这项工作中,采用穿孔石墨片(p-GS)和紫外光固化压敏胶(PSA)通过层压制造了一种导热薄膜(g-TC薄膜)。通过将紫外光固化松香酸酯掺入PSA组合物中制备了一种新型紫外光固化PSA。紫外光固化PSA在紫外光照射后变成无粘性薄膜;因此,获得了厚度为52μm的柔性g-TC薄膜。通过用氧等离子体处理p-GS,消除了g-TC薄膜中由气泡引起的缺陷。由于紫外光固化PSA通过p-GS中的孔形成连接,在折叠半径为1mm的10000次U型折叠测试循环后未观察到石墨的开裂。所制备的g-TC薄膜的计算面内热导率为179W∙mK,在U型折叠测试后保持稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00bb/7824192/dcaff3691180/nanomaterials-11-00093-g001.jpg

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