基于Eu, Tb, Gd的镧系金属-有机骨架薄膜的制备及其在发光传感器和发光器件中的应用

Helena Brunckova, Erika Mudra, Ivan Shepa
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引用次数: 1

摘要

镧系金属有机骨架(LnMOFs)是近年来发展起来的一类有趣的金属有机骨架。虽然已发表的论文中有很多是关于它们的合成、功能性质以及mof的应用机制的,但对lnmof薄膜的独立研究却很少。lnmof具有优异的结构灵活性、可调节的孔径、表面积、功能性和良好的化学稳定性,因此备受关注。在过去的二十年中,MOF薄膜的制备取得了重大进展,特别是在绿色或至少更环保的合成方法的发展方面。我们首先深入了解各种类型的mof,并总结了最近在LnMOF薄膜生产方面取得的成就,以及各种薄膜制备方法。随后,我们简要讨论了镧系离子的发光特性在薄膜中的应用及其作为白光源材料的潜力。我们还介绍了基于Eu、Tb和Gd的电影,并特别强调了不同的设计方法。此外,具体地说,发光特性应用于传感温度,各种离子,气体和生物分子被强调。本文最后对LnMOF薄膜的发展潜力进行了全面的总结,并对未来技术中LnMOF薄膜的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances in Lanthanide Metal–Organic Framework Thin Films Based on Eu, Tb, Gd: Preparation and Application as Luminescent Sensors and Light-Emitting Devices
Lanthanide Metal–Organic Frameworks (LnMOFs), in recent years, have developed into an interesting subclass of MOFs. While the number of published papers, in particular, were dedicated to their synthesis and functional properties, along with the application mechanisms of MOFs, only a few of them have been focused on LnMOFs thin films independently. LnMOFs have become interesting thanks to their outstanding properties, for example, excellent structural flexibility, tunable pore size, surface area, functionality, and good chemical stability. Significant progress over the past two decades in the preparation of MOF films has been achieved, especially towards the development of green, or at least greener, synthesis approaches. We begin with insight into various types of MOFs and summarize recent achievements in the production of LnMOF films, along with various film preparation approaches. Afterward, we briefly discuss the applications of luminescence features of lanthanide ions in films and their potential as white-light source materials. We also covered films based on Eu, Tb, and Gd with particular accents on different design approaches. Moreover, specifically, luminescent features applied for sensing temperature, a variety of ions, gases, and biomolecules are highlighted. The review ends with a comprehensive conclusion about the state-of-art-potential of LnMOFs together with an outlook on the future of LnMOF films in future technologies.
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