Enabling high dielectric response and low electrical leakage in polymer/mesoporous-silica@CdTe-quantum-dots nanocomposites by excitonic dipoles and pore-canal restriction

材料科学 电介质 高-κ电介质 复合材料 纳米复合材料 聚合物纳米复合材料 泄漏(经济) 复合数 纳米颗粒 介电强度 量子点 光电子学 纳米技术 经济 宏观经济学
作者
Yefeng Feng,Hongrong Qiu,Wei Xiong,Jiangqiong Wang,Maolin Bo,Qihuang Deng
出处
期刊:Ceramics International [Elsevier BV]
卷期号:47 (19): 26829-26838 被引量:5
标识
DOI:10.1016/j.ceramint.2021.06.091
摘要

High dielectric response and low leakage conduction are desired in polymer/ceramic composite dielectrics for capacitive energy storage. Rational structural design of hybrid ceramic filler can lead to a balance between high dielectric constant and insulation in composites. In this study, high dielectric constant and breakdown strength were achieved in fluoropolymer/mesoporous [email protected] nanocomposite films. Mesoporous silica nanoparticles (MSNs) were employed owing to their high insulation and complex electron-leakage channel. CdTe quantum dots combined with pore-canal inwalls of MSNs were employed because of their internal exciton polarization and MSNs/CdTe interface polarization. Compared with polymer/MSNs composites, polymer/[email protected] composites exhibited remarkably improved dielectric constant, slightly increased dielectric loss, and slightly reduced breakdown strength. High dielectric constant of ternary composites was ascribed to exciton orientation inside CdTe and interfacial dipole orientation between MSNs and CdTe. High breakdown strength was attributed to high insulation in MSNs and long-range electron transfer inside [email protected] An optimal ternary composite with 12 wt% [email protected] showed a high dielectric constant of ~56, low dielectric loss of ~0.19 at 100 Hz, and high breakdown strength of ~308 MV m-1. The results of this study can provide insights for enabling large-scale fabrication of modern composite dielectrics based on mesoporous [email protected] quantum dots fillers.
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