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储能系统技术 ★ 5.0

交联聚乙烯醇在少量氧化锌增强下的导电性与介电弛豫

Conductivity and dielectric relaxation of cross-linked polyvinyl alcohol reinforced by low amount of zinc oxide

作者 Research Data Policy · Data availability: Data will be made available on reasonable request.
期刊 Journal of Materials Science: Materials in Electronics
出版日期 2025年1月
卷/期 第 36.0 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 交联聚乙烯醇 氧化锌纳米复合薄膜 介电性能 热稳定性 溶胶-凝胶法
语言:

中文摘要

本研究报道了具有改善的热学和介电性能的交联聚乙烯醇/氧化锌(XLPVA/ZnO)纳米复合薄膜的制备,该材料有望应用于柔性电子器件和储能设备。研究动机在于通过化学交联与纳米粒子增强相结合的方式,开发低成本、柔性且热稳定的介电材料。采用改进的溶胶-凝胶法制备ZnO纳米颗粒,并以不同的质量分数(x = 0、1、2、4和6 wt%)引入经草酸交联(交联度为20%)的PVA基体中。X射线衍射(XRD)结构分析表明,随着ZnO含量的增加,结晶度和晶粒尺寸均有所提高,晶粒尺寸从16 nm增至27 nm。傅里叶变换红外光谱(FTIR)证实了ZnO的成功掺入,表现为在475、553、578–579和670 cm⁻¹处出现额外的Zn–O振动吸收峰。热重分析(TGA)显示材料的热稳定性得到提升,残余质量从纯交联PVA的约10%(x = 0 wt%)增加至6 wt% ZnO样品的约16%。动态力学分析(DMA)结果显示α-弛豫峰发生显著偏移,在4%和6% ZnO样品中分别出现在40 °C/65 °C和46 °C/71 °C,表明由于聚合物与填料之间的相互作用导致分子链运动能力降低。介电测量(40 Hz–1 MHz)结果证实了体系的无序特性,交流电导率遵循Jonscher幂律关系。由Arrhenius图提取的活化能值均低于1 eV,符合离子导电机制。模量形式分析进一步识别出一种热激活的弛豫过程,证实了载流子的局域化动力学行为。这些结果突出了交联结构与纳米粒子添加在调控PVA基复合材料介电与热响应方面的双重作用。所开发的材料展现出良好的特性,具备在未来柔性、低成本介电元件及嵌入式传感器技术中实现规模化集成的应用前景。

English Abstract

This study reports the fabrication of cross-linked Poly(vinyl alcohol)/zinc oxide (XLPVA/ZnO) nanocomposite films with improved thermal and dielectric properties for potential use in flexible electronics and energy storage devices. The motivation lies in developing low-cost, flexible, and thermally stable dielectric materials by combining chemical cross-linking and nanoparticle reinforcement. ZnO nanoparticles were synthesized via a modified sol–gel method and incorporated into the PVA matrix at different weight percentages ( x = 0, 1, 2, 4, and 6 wt%), following cross-linking with oxalic acid at a 20% degree. Structural analysis by XRD revealed increase in both crystallinity and crystallite size with increasing ZnO content from 16 to 27 nm. FTIR spectra confirmed successful ZnO incorporation, as evidenced by additional Zn–O vibrational bands at 475, 553, 578–579, and 670 cm⁻ 1 . Thermogravimetric analysis (TGA) showed improved thermal stability, with residual mass increasing from ~ 10% ( x = 0 Wt%) to ~ 16% ( x = 6 wt%). Dynamic mechanical analysis (DMA) revealed significant shifts in the α -relaxation peaks, observed at 40 °C/65 °C and 46 °C/71 °C for 4% and 6% ZnO, respectively, indicating reduced chain mobility due to polymer-filler interactions. Dielectric measurements (40 Hz–1 MHz) confirmed the disordered nature of the system, with AC conductivity following Jonscher’s power law. Activation energy values extracted from Arrhenius plots remained below 1 eV, consistent with ionic conduction. Modulus formalism further identified a thermally activated relaxation process, confirming localized charge carrier dynamics. These results highlight the dual role of cross-linking and nanoparticle addition in tuning the dielectric and thermal response of PVA-based composites. The materials developed here present promising features for scalable integration into future flexible, low-cost dielectric components, and embedded sensor technologies.
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SunView 深度解读

该交联PVA/ZnO纳米复合材料研究对阳光电源储能系统具有重要参考价值。材料展现的宽频介电特性(40Hz-1MHz)和热稳定性提升(残留质量提高60%)可应用于ST系列PCS的柔性电容器和绝缘层设计。其离子导电机制(活化能<1eV)为PowerTitan储能系统的电解质界面优化提供思路。交联改性技术可借鉴用于功率器件封装材料开发,提升SiC/GaN模块的热管理性能。低成本柔性介电材料特性契合充电桩嵌入式传感器和iSolarCloud智能监测模块的轻量化需求。