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用于提高高导热聚硅氧烷复合材料耐水解性的功能化氮化铝

Functionalized Aluminum Nitride for Improving Hydrolysis Resistances of Highly Thermally Conductive Polysiloxane Composites.

作者信息

He Mukun, Zhang Lei, Ruan Kunpeng, Zhang Junliang, Zhang Haitian, Lv Peng, Guo Yongqiang, Shi Xuetao, Guo Hua, Kong Jie, Gu Junwei

机构信息

Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, 710072, Shaanxi, People's Republic of China.

School of Materials Science and Engineering, Shandong University of Technology, Zibo, 255000, People's Republic of China.

出版信息

Nanomicro Lett. 2025 Feb 6;17(1):134. doi: 10.1007/s40820-025-01669-5.

Abstract

A series of divinylphenyl-acryloyl chloride copolymers (PDVB-co-PACl) is synthesized via atom transfer radical polymerization employing tert-butyl acrylate and divinylbenzene as monomers. PDVB-co-PACl is utilized to graft on the surface of spherical aluminum nitride (AlN) to prepare functionalized AlN (AlN@PDVB-co-PACl). Polymethylhydrosiloxane (PMHS) is then used as the matrix to prepare thermally conductive AlN@PDVB-co-PACl/PMHS composites with AlN@PDVB-co-PACl as fillers through blending and curing. The grafting of PDVB-co-PACl synchronously enhances the hydrolysis resistance of AlN and its interfacial compatibility with PMHS matrix. When the molecular weight of PDVB-co-PACl is 5100 g mol and the grafting density is 0.8 wt%, the composites containing 75 wt% of AlN@PDVB-co-PACl exhibit the optimal comprehensive performance. The thermal conductivity (λ) of the composite is 1.14 W m K, which enhances by 20% and 420% compared to the λ of simply physically blended AlN/PMHS composite and pure PMHS, respectively. Meanwhile, AlN@PDVB-co-PACl/PMHS composites display remarkable hydrothermal aging resistance by retaining 99.1% of its λ after soaking in 90 °C deionized water for 80 h, whereas the λ of the blended AlN/PMHS composites decreases sharply to 93.7%.

摘要

通过原子转移自由基聚合反应,以丙烯酸叔丁酯和二乙烯基苯为单体,合成了一系列二乙烯基苯 - 丙烯酰氯共聚物(PDVB - co - PACl)。利用PDVB - co - PACl接枝到球形氮化铝(AlN)表面,制备功能化AlN(AlN@PDVB - co - PACl)。然后以聚甲基氢硅氧烷(PMHS)为基体,通过共混和固化,以AlN@PDVB - co - PACl为填料制备导热性AlN@PDVB - co - PACl/PMHS复合材料。PDVB - co - PACl的接枝同步提高了AlN的耐水解性及其与PMHS基体的界面相容性。当PDVB - co - PACl的分子量为5100 g/mol且接枝密度为0.8 wt%时,含75 wt% AlN@PDVB - co - PACl的复合材料表现出最佳综合性能。该复合材料的热导率(λ)为1.14 W/(m·K),分别比简单物理共混的AlN/PMHS复合材料和纯PMHS的λ提高了20%和420%。同时,AlN@PDVB - co - PACl/PMHS复合材料表现出显著的耐水热老化性能,在90℃去离子水中浸泡80 h后,其λ保留率为99.1%,而共混的AlN/PMHS复合材料的λ急剧下降至93.7%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e281/11799469/dc2b38df9b4d/40820_2025_1669_Fig1_HTML.jpg

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