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储能系统技术 ★ 5.0

PVA/CMC/x wt% ZnAl2O4/ZnO共混聚合物线性/非线性光学与介电特性的调控及其在光电与电容储能中的应用

Adapting of the linear/nonlinear optical and dielectric features of PVA/CMC/x wt% ZnAl2O4/ZnO blended polymers for optoelectronic and capacitive energy storage uses

语言:

中文摘要

本研究通过将ZnAl2O4/ZnO纳米复合材料掺入聚乙烯醇(PVA)/羧甲基纤维素(CMC)共混聚合物中,制备了复合聚合物薄膜,旨在探索所制备材料在多种光电及电容储能领域的应用潜力。研究分析了填料样品的结构晶粒尺寸与形貌特征,并检测了填料含量对主体PVA/CMC共混聚合物结晶度的影响。光学吸收性能的增强或减弱取决于波长范围和(或)填料用量。在可见光区域,掺杂8 wt% ZnAl2O4/ZnO纳米复合材料的样品表现出最高的吸收能力。直接和间接光学带隙能量值随着ZnAl2O4/ZnO纳米复合材料浓度增加至2 wt%而升高,随后随着聚合物基体中ZnAl2O4/ZnO纳米复合材料含量的进一步增加而降低。仅当PVA/CMC基体中掺杂8 wt% ZnAl2O4/ZnO纳米复合材料时,其折射率才得到提升(达到1.72)。负载型复合聚合物的消光系数k值相较于未掺杂样品可能更高或更低,具体取决于掺杂水平和(或)波长范围。本文系统考察了掺杂量及波长范围对线性和非线性光学参数的影响。介电常数(在1 kHz下为16)和交流电导率均在填料含量为2 wt%时达到最大值,之后随着掺杂量的增加而下降。含有2 wt% ZnAl2O4/ZnO纳米复合材料的样品表现出更强的电容特性。将ZnAl2O4/ZnO纳米复合材料填料引入PVA/CMC聚合物体系中还显著影响了奈奎斯特图(Nyquist plot)的形态。

English Abstract

In current work, blended polymer films have been prepared from ZnAl 2 O 4 /ZnO nanocomposite loaded polyvinyl alcohol (PVA)/carboxymethyl cellulose (CMC) blended polymer to exploit the uses of the formed materials in diverse optoelectronic and capacitive energy storage uses. The structure crystallite size and morphology of the filler sample were explored. The influence of filler amount on the crystallinity of the host PVA/CMC blended polymer was detected. The optical absorbance improvement or decline was contingent upon the wavelength range and/or the quantity of filler. The sample doped with 8 wt% ZnAl 2 O 4 /ZnO nanocomposite has the greatest absorbance in the visible region. The direct and indirect optical band gap energy values increased as the ZnAl 2 O 4 /ZnO nanocomposite concentration reached 2 wt% and they subsequently decreased as the amount of ZnAl 2 O 4 /ZnO nanocomposite in the polymer matrix grew. Doping the host blend with 8 wt% ZnAl 2 O 4 /ZnO nanocomposite only enhanced its refractive index (1.72). The k values of the loaded composite polymers were either greater than or less than that of the undoped sample, relying on the dopant level and/or the wavelength range. The influence of doping amount and the wavelength range on the linear/nonlinear optical parameters were examined. The dielectric constant (16 at 1 kHz) and AC conductivity attained their uppermost value at 2 wt% filler content, subsequently declining with more doping. The sample with 2 wt% ZnAl 2 O 4 /ZnO nanocomposite has a greater capacitive nature. The insertion of ZnAl 2 O 4 /ZnO nanocomposite filler into the PVA/CMC polymer affected the Nyquist plot.
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SunView 深度解读

该PVA/CMC/ZnAl2O4复合聚合物薄膜技术对阳光电源储能系统具有应用价值。研究显示2wt%掺杂时介电常数达16(1kHz)且电容特性最优,可为ST系列PCS的薄膜电容器选型提供材料参考。其宽光谱吸收特性和可调带隙(通过掺杂浓度控制)对光伏逆变器的光电转换效率优化有启发意义。材料的非线性光学特性可应用于PowerTitan储能系统的电磁兼容设计。建议关注纳米复合材料在功率器件绝缘层和电容储能介质的应用潜力,特别是高频AC导电性能对SiC/GaN器件封装的优化价值。