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Photostability in dioxyheterocycle electrochromic polymers

机译:二氧杂环电致变色聚合物的光稳定性

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Many proposed applications for electrochromic polymers (ECPs), which are designed to modulate the intensity or spectral power density of light, center around the interaction between the ECPs and the incident light. The long-term effects of the interaction of light and ECPs are rarely discussed in the literature, yet is a crucial parameter in materials evaluation in many applications. With the goal of examining the photo-stability of select ECPs, two polymers were selected for study, which are representative of both 3,4-dioxythiophene (DOT) and 3,4-dioxypyrrole (DOP) based materials. Samples of each material were sealed in glass cells under varying atmospheric conditions using a polyisobutylene-based barrier sealant and irradiated under a solar simulator for time periods ranging from 24 hours to one month. Following irradiation, electrochromic performance was assessed via both electrochemical and spectroelectrochemical methods. Additionally, X-ray photoelectron spectroscopy (XPS) was used to study chemical changes following irradiation. We report here that, following irradiation, no change in electrochromic performance (as measured by Delta%T at lambda(max)) nor spectra recorded via XPS was observed in films encapsulated under an inert atmosphere, suggesting that conditions of irradiation alone are insufficient to degrade the performance of either ECP structure.
机译:电致变色聚合物(ECP)的许多提议的应用设计为调制光的强度或光谱功率密度,其围绕ECP和入射光之间的相互作用为中心。光与ECP相互作用的长期影响在文献中很少讨论,但在许多应用中是材料评估中的关键参数。为了检查所选ECP的光稳定性,选择了两种聚合物进行研究,它们分别代表3,4-二氧噻吩(DOT)和3,4-二氧吡咯(DOP)基材料。使用聚异丁烯基阻隔密封剂,在变化的大气条件下将每种材料的样品密封在玻璃池中,并在太阳模拟器下照射24小时至一个月。辐照后,通过电化学和光谱电化学方法评估电致变色性能。此外,X射线光电子能谱(XPS)用于研究辐照后的化学变化。我们在这里报告,在辐照后,在惰性气氛下封装的薄膜中未观察到电致变色性能的变化(通过λ%T在λ(max)处测量),也未观察到通过XPS记录的光谱,表明仅辐照条件不足以降低任一ECP结构的性能。

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