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储能系统技术 ★ 5.0

基于Nd3+/V2O5/乙基纤维素的固体聚合物电解质的开发

Developing solid polymer electrolytes-based Nd3+/V2O5/ethyl cellulose for optoelectronic devices

作者 Adel M. El Sayed
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 生物聚合物纳米复合材料 固体电解质 NdCl3改性 V2O5掺杂 离子电导率
语言:

中文摘要

基于生物聚合物纳米复合材料的固体电解质在环境友好的光电子学、能量存储以及食品和制药工业等现代应用中日益受到关注。本研究通过简便的溶液浇铸法制备了掺杂V2O5并用NdCl3改性的乙基纤维素(EC)薄膜,并系统研究了其结构、热性能、电流-电压(IV)特性及光学性质。X射线衍射结果揭示了EC具有半结晶特性,并证实V2O5纳米粒子(NP)成功掺入聚合物基体中。傅里叶变换红外光谱表明填料与EC的活性基团之间存在相互作用或络合现象。扫描电子显微镜显示纳米粒子分布均匀,并分析了薄膜表面及横截面的形貌特征。热分析用于研究V2O5纳米粒子和NdCl3对薄膜热稳定性和相变温度的影响。测得非线性的IV特性曲线,表明薄膜呈现非欧姆行为。光学分析(UV-Vis-NIR)结果显示,纯EC具有高透明性(约92%),随着掺杂量增加透光率有所下降。当掺入1.0 wt% V2O5纳米粒子时,薄膜的带隙从约5.2 eV缩小至4.8 eV,进一步用NdCl3改性后进一步降低至3.5 eV。本文还报道了填料对光学参数(消光系数、折射率、光学电导率和光学介电损耗)的影响。结果表明,所制备的材料是适用于光电子器件的理想候选材料,且器件可在室温及较高温度下正常工作。

English Abstract

Solid electrolytes based on biopolymer nanocomposites have gained increased interest in modern applications in environment-friendly optoelectronics, energy storage, and food and pharmaceutical industries. In this study, films of V 2 O 5 -doped ethyl cellulose (EC) modified with NdCl 3 were prepared by facile solution casting and investigated for their structural, thermal, IV characteristics, and optical properties. X-ray diffraction revealed the semicrystalline nature of EC and confirmed the incorporation of V 2 O 5 nanoparticles (NP) inside the polymer matrix. Fourier transform infrared spectra indicated the interaction/complexation between the fillers and the EC reactive groups. Scanning electron microscopy showed the uniform distribution of NP and investigated the morphology of the films’ surface and cross-section. The thermal analyses were used to study the impact of V 2 O 5 NP and NdCl 3 on the films' stability and transition temperatures. Non-linear IV characteristic curves were recorded, and the films displayed non-ohmic behavior. The optical analyses (UV-Vis-NIR) showed that EC is highly transparent (~ 92%), which decreased with doping. The bandgap of the films shrank from ~ 5.2 eV to 4.8 eV upon 1.0 wt % V 2 O 5 NP doping and then reduced to 3.5 eV when modified with NdCl 3 . The effect of fillers on the optical parameters (the extinction coefficient, refractive index, optical conductivity, and optical dielectric loss) are reported. The results indicate that the prepared materials are the best candidates for optoelectronic applications, and devices work at room temperature and elevated temperatures.
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SunView 深度解读

该固态聚合物电解质技术对阳光电源储能系统具有前瞻价值。研究中V2O5掺杂纤维素材料展现的宽温域稳定性(室温至高温)、可调带隙(5.2-3.5eV)及非线性IV特性,可为ST系列PCS的电容器介质、PowerTitan储能系统的热管理材料提供创新方向。生物基纳米复合电解质的环保特性契合ESS绿色制造理念,其光电性能优化思路可启发功率器件封装材料研发,提升SiC/GaN模块在高温环境下的可靠性与光学监测能力。