Wang Qinlong, Wang Hao, Zhang Caixia, Zhang Qilong, Yang Hui
State Key Laboratory Silicon Mat, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Jiaxing Glead Elect Co., Ltd., Jiaxing 314003, China.
Polymers (Basel). 2021 Nov 19;13(22):4006. doi: 10.3390/polym13224006.
High-frequency communication equipment urgently needs substrate materials with lower dielectric loss, better heat dissipation, and higher stability, to ensure real-time low-loss and high-speed signal transmission. The core-shell structure of SrCeO@SiO was prepared by the sol-gel method, and the modified powders with different volume contents were introduced into the cyclic olefin copolymer (COC) to prepare hydrocarbon resin-based composites. Due to the protective effect of the SiO shell, the stability of the powders is significantly improved, and the moisture barrier and corrosion resistance of the composites are enhanced, which is conducive to the normal operation of electronic equipment in harsh and complex environments. When the filler content is 20 %, the composite has a dielectric loss of 0.0023 at 10 GHz, a dielectric constant of 3.5, a thermal conductivity of 0.9 W·m·K, a water absorption of 0.32% and a coefficient of thermal expansion of 37.7 ppm/°C. The COC/SrCeO@SiO composites exhibit excellent dielectric properties and thermal conductivity, while maintaining good moisture resistance and dimensional stability, which shows potential application prospects in the field of high-frequency substrates.
高频通信设备迫切需要具有更低介电损耗、更好散热性和更高稳定性的基板材料,以确保实时低损耗和高速信号传输。采用溶胶-凝胶法制备了SrCeO@SiO核壳结构,并将不同体积含量的改性粉末引入环烯烃共聚物(COC)中,制备了碳氢树脂基复合材料。由于SiO壳层的保护作用,粉末的稳定性显著提高,复合材料的防潮性和耐腐蚀性增强,有利于电子设备在恶劣复杂环境下正常运行。当填料含量为20%时,复合材料在10 GHz时的介电损耗为0.0023,介电常数为3.5,热导率为0.9 W·m·K,吸水率为0.32%,热膨胀系数为37.7 ppm/°C。COC/SrCeO@SiO复合材料表现出优异的介电性能和热导率,同时保持良好的防潮性和尺寸稳定性,在高频基板领域显示出潜在的应用前景。