材料科学
聚酯纤维
复合材料
电介质
电容器
电容感应
介电强度
储能
结晶度
聚丙烯
热传导
薄膜电容器
聚合物
电场
介电损耗
偶极子
电植树
介电吸收
介电常数
液体电介质
压力(语言学)
威布尔分布
数码产品
光电子学
电气故障
作者
Tianke Chen,Michael Chen,Jiazhen Liu,Grace Gilson,Yongchang Wu,Honghu Zhang,Shihai Zhang,Eric Baer,Lei Zhu
标识
DOI:10.1016/j.ensm.2025.104687
摘要
• BOPEN films exhibit high temperature tolerance up to 140°C with a potential to replace BOPP for capacitors. • BOPEN films exhibit higher breakdown strength and lifetime as compared to BOPET and BOPP films at >100°C. • Main chain rigidity of BOPEN decreases homocharge injection and thus DC/AC electronic conduction losses. Biaxially oriented polypropylene (BOPP) films are widely used in dielectric capacitors due to their ultralow loss, high breakdown strength, and long lifetime. However, their poor temperature tolerance limits applications in emerging high-temperature environments such as wide-band-gap power electronics in electric vehicles. Here, we report significantly enhanced dielectric insulation properties of biaxially oriented poly(ethylene 2,6-naphthalate) (BOPEN) films compared to biaxially oriented poly(ethylene terephthalate) (BOPET) films, despite their similar semicrystalline morphologies. BOPEN exhibits higher DC and AC breakdown strengths and markedly extended lifetimes at elevated temperatures. For instance, at 120 °C, the DC Weibull lifetime of BOPEN exceeded that of BOPET by over two orders of magnitude and even surpassed that of BOPP. Through comprehensive analyses—leakage current, electric displacement-electric field (D-E) loops, and thermally stimulated depolarization current—we attribute this superior performance to suppressed homocharge injection and conduction losses, enabled by the rigid naphthalene-based backbone in BOPEN that reduces dipole mobility and chain polarity. These findings underscore the potential of BOPEN as a next-generation polymer dielectric for high-temperature capacitor applications.
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