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电压稳定剂接枝PP/SEBS多电荷陷阱-环境稳定性分子设计

赵新东 王嘉琪 杨佳明 王猛 臧德峰

物理学报2026,Vol.75Issue(10):391-403,13.
物理学报2026,Vol.75Issue(10):391-403,13.DOI:10.7498/aps.75.20251558

电压稳定剂接枝PP/SEBS多电荷陷阱-环境稳定性分子设计

Molecular simulation insights into voltage-stabilizer-grafted PP/SEBS for high insulation charge traps and environmental stability

赵新东 1王嘉琪 1杨佳明 1王猛 2臧德峰2

作者信息

  • 1. 哈尔滨理工大学电气与电子工程学院,高效能特种电缆技术全国重点实验室,哈尔滨 150080
  • 2. 特变电工山东鲁能泰山电缆有限公司,山东省电线电缆绝缘材料重点实验室,泰安 271219
  • 折叠

摘要

Abstract

A multiscale molecular simulation framework that integrates density functional theory(DFT),molecular dynamics(MD),and Monte Carlo(MC)methods is employed to elucidate the molecular mechanisms underlying the synergistic enhancement of electrical insulation,oxidative resistance,and thermal stability in polypropylene/styrene-ethylene-butylene-styrene(PP/SEBS)composite via covalent grafting of a tailored voltage stabilizer(3-amino-5-chlorophenyl 3-fluorophenyl methanone,ACFM).First-principles calculations demonstrate that ACFM grafts efficiently introduce multiple charge traps—specifically,electron traps(0.4-2.2 eV)and hole traps(0.5-1.6 eV)—within the electronic bandgaps of both the PP macromolecule and PP/SEBS interfacial region,effectively suppressing charge carrier migration.The delocalized p-conjugated system of ACFM phenylene moieties promotes hot-electron kinetic energy dissipation via carrier-phonon coupling,thereby inhibiting impact ionization and enhancing the intrinsic dielectric breakdown strength.MD and MC simulations further reveal that the grafted multi-dipolar ACFM side chains enhance the thermodynamic compatibility between PP and SEBS segments,promote densification of the amorphous region,and significantly reduce fractional free volume and oxygen permeability.Consequently,oxygen absorption capacity and self-diffusion coefficients decrease markedly across the operational temperature range(300-600 K),effectively suppressing oxidative penetration and free-volume-mediated electrical breakdown.Reaction pathway calculations indicate that ACFM-grafted PP exhibits an approximately 50%reduction in the oxidative exothermic heat compared to pristine PP and SEBS,accompanied by a slight increase in activation energy,thereby corroborating the enhanced antioxidative stability.The covalent immobilization of ACFM thus collectively enhances charge trapping capability,thermal endurance,oxygen barrier performance,and oxidative resistance,thereby establishing a comprehensive molecular design paradigm for advanced polymer dielectrics operating under harsh environmental conditions.

关键词

化学接枝/电压稳定剂/电荷陷阱/分子模拟

Key words

chemical graft/voltage stabilizer/charge trap/molecular simulation

引用本文复制引用

赵新东,王嘉琪,杨佳明,王猛,臧德峰..电压稳定剂接枝PP/SEBS多电荷陷阱-环境稳定性分子设计[J].物理学报,2026,75(10):391-403,13.

基金项目

黑龙江省自然科学基金(批准号:TD2025E003)资助的课题. Project supported by the Heilongjiang Provincial Natural Science Foundation of China(Grant No.TD2025E003). (批准号:TD2025E003)

物理学报

1000-3290

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