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Transparent to Black Electrochromism—The “Holy Grail” of Organic Optoelectronics

机译:对黑色电致变色透明—有机光电的“圣杯”

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摘要

In the rapidly developing field of conjugated polymer science, the attribute of electrochromism these materials exhibit provides for a multitude of innovative application opportunities. Featuring low electric potential driven colour change, complemented by favourable mechanical and processing properties, an array of non-emissive electrochromic device (ECD) applications lays open ahead of them. Building up from the simplest two-colour cell, multielectrochromic arrangements are being devised, taking advantage of new electrochromic materials emerging at a fast pace. The ultimate device goal encompasses full control over the intensity and spectrum of passing light, including the two extremes of complete and null transmittance. With numerous electrochromic device architectures being explored and their operating parameters constantly ameliorated to pursue this target, a summary and overview of developments in the field is presented. Discussing the attributes of reported electrochromic systems, key research points and challenges are identified, providing an outlook for this exciting topic of polymer material science.
机译:在共轭聚合物科学迅速发展的领域中,这些材料所呈现的电致变色特性为众多创新应用提供了机会。低电位驱动的颜色变化,加上良好的机械和加工性能,一系列非发光电致变色器件(ECD)应用摆在面前。在最简单的两色单元的基础上,正在设计多电致变色装置,以利用快速出现的新型电致变色材料。最终的设备目标包括完全控制通过的光的强度和光谱,包括完全和无效透射率的两个极端。为了探索许多电致变色器件体系结构并不断改善其工作参数以实现该目标,现对本领域的发展进行了总结和概述。讨论报告的电致变色系统的属性,关键的研究要点和挑战,为聚合物材料科学这个激动人心的话题提供前景。

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