Recent Progress on Circularly Polarized Luminescent Materials for Organic Optoelectronic Devices

材料科学 发光 圆极化 光电子学 磁圆二色性 圆二色性 发光测量 旋光色散 光学 结晶学 物理 化学 天文 谱线 微带线
作者
Jianmei Han,Song Guo,Hu Jie Lu,Shujuan Liu,Qiang Zhao,Wei Huang
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:6 (17) 被引量:604
标识
DOI:10.1002/adom.201800538
摘要

Abstract Due to the characteristics of optical rotation, selective emission of polarized light, and circular dichroism, circularly polarized luminescent materials have aroused extensive attentions, and they have exhibited wide optoelectronic applications, such as optical data storage, liquid crystal display, and backlights in 3D displays. Here, the research progress of circularly polarized luminescent materials for organic optoelectronic devices is summarized. First, the definition and measurement of the circularly polarized light, such as optical rotatory dispersion, circular dichroism, and circularly polarized luminescence, are systematically introduced. Subsequently, the design strategies for various kinds of circularly polarized luminescent materials, including luminescent lanthanide and transition‐metal complexes, small organic luminophores, conjugated polymers, supramolecules, and liquid crystals are summarized. These materials exhibit circularly polarized luminescence with different magnitudes of luminescence dissymmetry values ( g lum ). They are further applied in optoelectronic devices with excellent performance, and the influence factors on the g lum values of these materials are presented in detail. Finally, the current opportunities and challenges in this rapidly growing research field are discussed systematically. The circularly polarized luminescent materials with large g lum and high luminescence efficiency are very promising for applications in organic optoelectronic fields.
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