Ji Lei, Shi Junqing, Wei Juan, Yu Tao, Huang Wei
Frontiers Science Center for Flexible Electronics (FSCFE), Shaanxi Institute of Flexible Electronics (SIFE) & Shaanxi Institute of Biomedical Materials and Engineering (SIBME), Northwestern Polytechnical University, Xi'an, Shaanxi, 710072, China.
Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore, 117543, Singapore.
Adv Mater. 2020 Aug;32(32):e1908015. doi: 10.1002/adma.201908015. Epub 2020 Jun 25.
In the last few years, air-stable organic radicals and radical polymers have attracted tremendous attention due to their outstanding performance in flexible electronic devices, including transistors, batteries, light-emitting diodes, thermoelectric and photothermal conversion devices, and among many others. The main issue of radicals from laboratory studies to real-world applications is that the number of known air-stable radicals is very limited, and the radicals that have been used as materials are even less. Here, the known and newly developed air-stable organic radicals are summarized, generalizing the way of observing air-stable radicals. The special electric and photophysical properties of organic radicals and radical polymers are interpreted, which give radicals a wide scope for various of potential applications. Finally, the exciting applications of radicals that have been achieved in flexible electronic devices are summarized. The aim herein is to highlight the recent achievements in radicals in chemistry, materials science, and flexible electronics, and further bridge the gap between these three disciplines.
在过去几年中,空气稳定的有机自由基和自由基聚合物因其在包括晶体管、电池、发光二极管、热电和光热转换器件等众多柔性电子器件中表现出的优异性能而备受关注。从实验室研究到实际应用,自由基面临的主要问题是已知的空气稳定自由基数量非常有限,而用作材料的自由基更是少之又少。在此,总结了已知的和新开发的空气稳定有机自由基,归纳了观察空气稳定自由基的方法。解释了有机自由基和自由基聚合物特殊的电学和光物理性质,这些性质为自由基在各种潜在应用中提供了广阔空间。最后,总结了自由基在柔性电子器件中已取得的令人瞩目的应用。本文旨在突出自由基在化学、材料科学和柔性电子学领域的最新进展,并进一步弥合这三个学科之间的差距。