Li Penghao, Zhou Zhonghao, Zhao Yong Sheng, Yan Yongli
Beijing National Laboratory for Molecular Sciences (BNLMS), CAS Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Chem Commun (Camb). 2021 Dec 16;57(100):13678-13691. doi: 10.1039/d1cc05541k.
In recent years, metal-organic frameworks (MOFs) have been attracting ever more interest owing to their fascinating structures and widespread applications. Among the optoelectronic materials, luminescent MOFs (LMOFs) have become one of the most attractive candidates in the fields of optics and photonics thanks to the unique characteristics of their frameworks. Luminescence from MOFs can originate from either the frameworks, mainly including organic linkers and metal ions, or the encapsulated guests, such as dyes, perovskites, and carbon dots. Here, we systematically review the recent progress in LMOFs, with an emphasis on the relationships between their structures and emission behaviour. On this basis, we comprehensively discuss the research progress and applications of multicolour emission from homogeneous and heterogeneous structures, host-guest hybrid lasers, and pure MOF lasers based on optically excited LMOFs in the field of micro/nanophotonics. We also highlight recent developments in other types of luminescence, such as electroluminescence and chemiluminescence, from LMOFs. Future perspectives and challenges for LMOFs are provided to give an outlook of this emerging field. We anticipate that this article will promote the development of MOF-based functional materials with desired performance towards robust optoelectronic applications.
近年来,金属有机框架材料(MOFs)因其迷人的结构和广泛的应用而备受关注。在光电子材料中,发光金属有机框架材料(LMOFs)由于其框架的独特特性,已成为光学和光子学领域最具吸引力的候选材料之一。MOFs的发光可源于框架本身,主要包括有机连接体和金属离子,也可源于封装的客体,如染料、钙钛矿和碳点。在此,我们系统地综述了LMOFs的最新进展,重点关注其结构与发光行为之间的关系。在此基础上,我们全面讨论了基于光激发LMOFs的均相和异相结构的多色发射、主客体混合激光器以及纯MOF激光器在微纳光子学领域的研究进展和应用。我们还强调了LMOFs在其他类型发光方面的最新进展,如电致发光和化学发光。提供了LMOFs的未来展望和挑战,以展望这一新兴领域。我们预计本文将推动具有所需性能的基于MOF的功能材料的发展,以实现强大的光电子应用。