材料科学
电介质
调制(音乐)
极化(电化学)
光电子学
聚乙烯
频率调制
纳米技术
聚合物
调幅
作者
Ke Li,Lu-Ming Zhou,Yun-Xiao Zhang,Yuanxiang Zhou
标识
DOI:10.1021/acsami.5c21847
摘要
Electrical failure of cross-linked polyethylene (XLPE) insulation originates from microdefects with strongly intensified local fields. Here we establish a dielectrophoresis-guided molecular targeting strategy that directs anthraquinone (AQ) toward these high-field regions. The field-gradient-driven migration of AQ leads to localized deep-trap formation, efficient carrier capture, and suppression of field distortion. At an optimal 1 wt % loading, AQ enhances the direct current breakdown strength of XLPE by 44%, reduces conductivity, and regulates trap states, while maintaining processability. These results reveal a coupled mechanism of field-driven molecular redistribution and trap-state regulation, providing new insight into the dynamic charge-field interactions that govern electrical reliability in polymer dielectrics, and establishing a generalizable mechanism for defect-level stabilization via dielectrophoretic targeting.
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