Tricarico Michele, Mollick Samraj, Kachwal Vishal, Sherman Dylan A, Tan Jin-Chong
Multifunctional Materials and Composites (MMC) Laboratory, Department of Engineering Science, University of Oxford, Parks Road, Oxford OX1 3PJ, U.K.
Chem Mater. 2024 Aug 20;36(17):8247-8254. doi: 10.1021/acs.chemmater.4c00963. eCollection 2024 Sep 10.
Luminescent metal-organic frameworks exhibit great potential as materials for nanophotonic applications because of their programmable properties and tunable structures. In particular, luminescent guests (LG) can be hosted by metal-organic frameworks due to their porosity and guest confinement capacity, forming LG@MOF composite systems. However, such guest-host systems are mainly produced as loose powders, preventing their widespread use in practical devices and technological applications that require implementation of a stable continuum solid. In this regard, using monolithic MOF hosts might be a workable option to solve this challenge. Herein, we reported the facile synthesis and fabrication of novel prototypical sol-gel monolithic systems, designated as LG@monoMOF. Red (rhodamine B), blue (7-methoxycoumarin), and yellow (fluorescein) emitting dyes were encapsulated in a robust UiO-66 monolithic host, resulting in the red, blue, and yellow light-emitting luminescent monoliths. The mechanical and photophysical characterization of the three LG@monoMOF systems was systematically carried out in order to unravel the role of guest-host interactions in the mechanical and optical response of the bespoke LG@monoMOF composites.
发光金属有机框架由于其可编程特性和可调节结构,在纳米光子学应用材料方面展现出巨大潜力。特别是,由于金属有机框架的孔隙率和客体限制能力,发光客体(LG)可以被其容纳,从而形成LG@MOF复合体系。然而,这种客体-主体体系主要以松散粉末形式制备,这阻碍了它们在需要稳定连续固体的实际设备和技术应用中的广泛使用。在这方面,使用整体式金属有机框架主体可能是解决这一挑战的可行选择。在此,我们报道了新型原型溶胶-凝胶整体式体系(命名为LG@monoMOF)的简便合成与制备。将红色(罗丹明B)、蓝色(7-甲氧基香豆素)和黄色(荧光素)发光染料封装在坚固的UiO-66整体式主体中,得到了发红光、蓝光和黄光的发光整体材料。为了阐明客体-主体相互作用在定制的LG@monoMOF复合材料的力学和光学响应中的作用,我们系统地对三种LG@monoMOF体系进行了力学和光物理表征。