Overview of Electrochromic Materials and Devices: Scope and Development Prospects

A. Shchegolkov, E. Tugolukov, A. Shchegolkov
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引用次数: 3

Abstract

Today, the global energy consumption associated with heating, air conditioning (cooling) and lighting of buildings (which is about 40 %) can be significantly reduced through the use of chromogenic materials or the so-called “Smart Window” technology. Approximately 20–25 % of thermal energy can be saved by reducing heat loss through the windows, and 25–30 % of the electrical energy spent on lighting will be saved by using Smart Window technology instead of conventional windows, which are less energy-efficient in buildings. The article provides an overview of electrochromic materials and the practice of their use in various optical devices, as well as methods for their preparation. The prospects of using various electrochromic materials as coatings for window glasses, mirrors, and large-area displays are considered. A modern analysis of electrochromic devices based on nanostructured materials used in various applications is presented. The latest achievements and developments in the field of electrochromic materials are discussed. The paper discusses the findings of studies and the possibilities of their use for protection from light radiation, in particular, their use as light filters and light modulators for optoelectronic devices are ed.
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电致变色材料与器件综述:范围与发展前景
今天,通过使用显色材料或所谓的“智能窗”技术,与建筑物的供暖、空调(制冷)和照明相关的全球能源消耗(约占40%)可以显着减少。通过减少通过窗户的热量损失,可以节省大约20 - 25%的热能,并且通过使用智能窗户技术代替建筑物中能效较低的传统窗户,可以节省25 - 30%用于照明的电能。本文综述了电致变色材料及其在各种光学器件中的应用,以及电致变色材料的制备方法。展望了利用各种电致变色材料作为窗玻璃、镜子和大面积显示器涂层的前景。介绍了基于纳米结构材料的电致变色器件在各种应用中的现代分析。讨论了电致变色材料领域的最新进展。本文讨论了研究结果及其在光辐射防护方面的应用,特别是在光电器件中用作滤光器和光调制器的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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