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通过连续双金属离子交换制备的含银/氧化铝纳米片的聚醚酰亚胺介电薄膜具有优异的高温击穿和储能性能。

Excellent high-temperature breakdown and energy storage performances of polyetherimide dielectric film with silver/alumina nanosheets derived from sequential bimetallic ion exchange.

作者信息

Fan Xuyuan, Xia Shuimiao, Yang Lihao, Liu Guanfei, Huang Jie, Liu Yao, Shi Zhicheng

机构信息

School of Materials Science and Engineering, Ocean University of China, Qingdao 266100, China.

School of Materials Science and Engineering, Shandong University, Jinan 250061, China; Shandong Key Laboratory of Metamaterial and Electromagnetic Manipulation Technology, Jinan 250061, China.

出版信息

J Colloid Interface Sci. 2025 Sep 3;702(Pt 1):138912. doi: 10.1016/j.jcis.2025.138912.

Abstract

Polymer dielectrics have attracted substantial attention for their extensive applications in advanced electronic power systems. However, their practical implementation is substantially hindered by the drastic deterioration in breakdown strength and energy storage capabilities at elevated temperatures. Herein, corrugated alumina (AlO) nanosheets anchored with uniformly dispersed silver nanoparticles (AgNPs) are fabricated via a sequential bimetallic ion exchange method using polyimide (PI) film as the sacrificing template. The AgNPs and AlO nanosheets (AONSs) are in-situ formed on the molecular chain of PI in one step, which not only avoids the aggregation of AgNPs but also ensures the high purity of the AgNPs@AONSs. Benefiting from the excellent high-temperature insulating properties of AlO and the Coulomb blockade effect of AgNPs, when the AgNPs@AONSs are incorporated into polymer dielectrics, they can act as powerful charge transport buffer strips and improve the breakdown strength. The polyetherimide film filled with merely 0.1 wt% AgNPs@AONSs shows ultra-high energy densities of 10.22 J cm at 150 °C with 90 % efficiency and 7.49 J cm at 200 °C with 80 % efficiency, which are 542 % and 226 % that of the pristine polyetherimide, respectively. The excellent high-temperature performances of the composite films make them promising candidates for high-temperature pulsed power systems.

摘要

聚合物电介质因其在先进电子电力系统中的广泛应用而备受关注。然而,在高温下其击穿强度和储能能力的急剧下降严重阻碍了它们的实际应用。在此,通过以聚酰亚胺(PI)薄膜为牺牲模板的顺序双金属离子交换法,制备了锚定有均匀分散银纳米颗粒(AgNPs)的波纹状氧化铝(AlO)纳米片。AgNPs和AlO纳米片(AONSs)在一步中在PI的分子链上原位形成,这不仅避免了AgNPs的聚集,还确保了AgNPs@AONSs的高纯度。受益于AlO优异的高温绝缘性能和AgNPs的库仑阻塞效应,当将AgNPs@AONSs掺入聚合物电介质中时,它们可以作为强大的电荷传输缓冲带并提高击穿强度。仅填充0.1 wt% AgNPs@AONSs的聚醚酰亚胺薄膜在150°C时显示出10.22 J/cm³的超高能量密度,效率为90%,在200°C时为7.49 J/cm³,效率为80%,分别是原始聚醚酰亚胺的542%和226%。复合薄膜优异的高温性能使其成为高温脉冲电力系统的有前途的候选材料。

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