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引用次数: 0
摘要
本文报告了电沉积聚苯胺(PANI)薄膜的线性比色和电致变色(EC)特性。本文还研究了酸掺杂 PANI 薄膜的红外电致发光特性。采用电化学聚合方法在 PET-ITO 基底上形成了多孔的薄 PANI 膜层。这层薄膜上覆盖了 WO3 薄膜,形成了凝胶电解质夹层结构,证明了 PANI 薄膜与阴极 WO3 薄膜在全器件中的兼容性。薄膜的电沉积是通过施加不同的电压和时间来完成的,其中 1.7 V 的电压和 20 分钟的沉积时间可获得最佳的薄膜质量。本研究对薄膜的表面形貌、光学性能、电化学行为和分子结构演化进行了全面研究。线性比色行为和拉曼光谱中相应的显著结构变化直接建立了导电聚合物的定量关系。在循环伏安法中观察到的清晰的氧化峰和还原峰表明 PANI 的电致色过程中离子扩散占主导地位。在聚合物的漂白态和着色态,拉曼光谱中苯相和醌相之间存在明显的转变。这项研究加深了人们对 PANI 薄膜结构、电化学和相关光学特性的理解,为双功能 EC 电荷存储聚合物和其他与能源相关的功能材料提供了更多启示。
Electrochromic Polymers: From Electrodeposition to Hybrid Solid Devices
This paper reports on the linear colorimetric and electrochromic (EC) characteristics of electrodeposited polyaniline (PANI) films. This paper also investigates the infrared EC properties of acid-doped PANI films. The electrochemical polymerization method was employed to create a porous and thin PANI film layer onto PET-ITO substrates. This layer was capped with WO3 film to create a gel electrolyte sandwich structure that demonstrates the compatibility of PANI films with cathodic WO3 films in full devices. The electrodeposition of the film was fabricated by applying different voltages and time, with the optimal film quality achieved with the 1.7 V voltage and a 20 min deposition period. The surface morphology, optical performance, electrochemical behavior, and molecular structure evolution are comprehensively studied in this work. The linear colorimetric behaviors and the corresponding significant changes in the structure in Raman spectra build direct strong quantitative relations in EC polymers. The well-defined oxidation and reduction peaks observed in the cyclic voltammetry indicate the ion-diffusion dominant process in the electrochromism of PANI. Significant transitions between the benzene and quinone phases in the Raman spectra are found in the bleached and colored states of polymers. This study enhances the understanding of PANI film structure and electrochemical and associated optical properties, providing more insights into the dual-function EC charge storage polymers and other energy-related functional materials.
期刊介绍:
Energies (ISSN 1996-1073) is an open access journal of related scientific research, technology development and policy and management studies. It publishes reviews, regular research papers, and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.