Li Xinglin, Yao Rihui, Li Muyun, Guo Chenxiao, Luo Dongxiang, Zhong Jinyao, Xu Zhuohui, Ning Honglong, Peng Junbiao
Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Guangzhou, 510640, China.
School of Chemistry and Chemical Engineering, Institute of Clean Energy and Materials, Guangzhou Key Laboratory for Clean Energy and Materials, Huangpu Hydrogen Innovation Center, Guangzhou University, Guangzhou, 510006, PR China.
Recent Pat Nanotechnol. 2024;18(2):117-129. doi: 10.2174/1872210517666230330104953.
Electrochromic materials can dynamically change their optical properties (such as transmittance, absorbance, and reflectance under the action of an applied voltage, and their research and application in the visible band have been widely concerned. In recent years, with the continuous development of electrochromic technology, the related research has been gradually extended to the infrared region.
This invited review aims to provide an overview of the current status of several inorganic infrared electrochromic materials, to provide some references for future research, and to promote the research and application of electrochromic technology in the infrared region.
This review summarizes various research results in the field of infrared electrochromic, which includes a detailed literature review and patent search. Starting from the key performance parameters and device structure characteristics of infrared electrochromic devices (ECDs), the research and progress of several types of inorganic infrared electrochromic materials, including metal oxides, plasma nanocrystals, and carbon nanomaterials, are mainly presented, and feasible optimization directions are also discussed.
We believe that the potential of these materials for civilian and military applications, for example, infrared electrochromic smart windows, infrared stealth/disguise, and thermal control of spacecraft, can be fully exploited by optimizing the materials and their devices to improve their performance.
电致变色材料可在施加电压的作用下动态改变其光学性质(如透过率、吸光度和反射率),其在可见光波段的研究与应用受到广泛关注。近年来,随着电致变色技术的不断发展,相关研究已逐渐扩展至红外区域。
本特邀综述旨在概述几种无机红外电致变色材料的研究现状,为未来研究提供参考,推动电致变色技术在红外区域的研究与应用。
本综述总结了红外电致变色领域的各类研究成果,包括详细的文献综述和专利检索。从红外电致变色器件(ECD)的关键性能参数和器件结构特点出发,主要介绍了几种无机红外电致变色材料的研究与进展,包括金属氧化物、等离子体纳米晶体和碳纳米材料,并探讨了可行的优化方向。
我们认为,通过优化材料及其器件以提高其性能,可以充分发挥这些材料在民用和军事应用方面的潜力,例如红外电致变色智能窗、红外隐身/伪装以及航天器的热控。