Wu Wenbo, Liu Bin
Institute of Molecular Aggregation Science, Tianjin University, Tianjin 300072, China.
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore 117585, Singapore.
Mater Horiz. 2022 Jan 4;9(1):99-111. doi: 10.1039/d1mh01030a.
Organic functional materials with advanced optical properties have attracted much attention due to their broad applications, such as in light-emitting diodes, solar cells, anti-counterfeiting, photocatalysis, and even disease diagnosis and treatment. Recent research has revealed that many optical properties of organic molecules can be improved through simple polymerization. In this review, we discuss the phenomenon, mechanism, and impact of polymerization on the properties of materials, including the polymerization-induced spectral shift, polymerization-enhanced photosensitization, polymerization-enhanced two-photon absorption, polymerization-enhanced photocatalytic efficiency, polymerization-induced room temperature phosphorescence, polymerization-induced thermally activated delayed fluorescence, and polymerization-induced emission using specific examples with different applications. The new opportunities arising from polymerization in designing high performance optical materials are summarized in the future perspective.
具有先进光学性能的有机功能材料因其广泛的应用而备受关注,如在发光二极管、太阳能电池、防伪、光催化,甚至疾病诊断与治疗等领域。最近的研究表明,通过简单的聚合反应可以改善有机分子的许多光学性能。在这篇综述中,我们讨论了聚合反应对材料性能的现象、机理和影响,包括聚合诱导的光谱位移、聚合增强的光敏化、聚合增强的双光子吸收、聚合增强的光催化效率、聚合诱导的室温磷光、聚合诱导的热激活延迟荧光,以及使用不同应用的具体实例的聚合诱导发光。在未来展望中总结了聚合反应在设计高性能光学材料方面带来的新机遇。