Wang Zheng, Chen Xin-Qi, Wang Dan, Zhou Yu-Qi, Li Meng-Yang, Mo Jun-Ting
Key Laboratory of Chemical Additives for China National Light Industry, College of Chemistry and Chemical Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.
School of Physics, Xidian University, Xi' an 710071, China.
Inorg Chem. 2024 Jan 15;63(2):1188-1196. doi: 10.1021/acs.inorgchem.3c03612. Epub 2024 Jan 4.
Metal-organic frameworks (MOFs) with long persistent luminescence (LPL) have attracted extensive research attention from researchers due to their potential applications in information encryption, anticounterfeiting technology, and security logic. In contrast to short-lived fluorescent materials, LPL materials offer a visible response that can be easily distinguished by the naked eye, thereby facilitating a much clearer visualization. However, there are few reports on functional LPL MOF materials as probes. In this article, two amino-functional LPL MOFs (VB4-2D and VB4-1D) were synthesized. They both exhibited adjustable fluorescence and phosphorescence from blue to green and from cyan to green, respectively. Notably, the MOFs emitted bright and adjustable LPL upon the removal of the different radiation sources. The basic amino functional groups in the MOFs exhibited acid and ammonia sensitivity, and fluorescence and phosphorescence emission intensities can be burst and restored in two atmospheres, respectively, which can be cycled multiple times. Furthermore, LPL intensity undergoes switching between two different conditions as well, which can be visually discerned by the naked eye, enabling visual sensing of volatiles by LPL. This combination of photoluminescence and the visual LPL switching behavior of acids and bases in functional MOFs may provide an effective avenue for stimulus response, anticounterfeiting, and encryption applications.
具有长余辉发光(LPL)的金属有机框架(MOF)因其在信息加密、防伪技术和安全逻辑方面的潜在应用而受到研究人员的广泛关注。与短寿命荧光材料相比,LPL材料提供了一种肉眼可轻松区分的可见响应,从而便于更清晰地可视化。然而,关于功能性LPL MOF材料作为探针的报道很少。在本文中,合成了两种氨基功能化的LPL MOF(VB4-2D和VB4-1D)。它们分别表现出从蓝色到绿色以及从青色到绿色的可调荧光和磷光。值得注意的是,在去除不同辐射源后,这些MOF发出明亮且可调的LPL。MOF中的碱性氨基官能团表现出对酸和氨的敏感性,荧光和磷光发射强度可分别在两种气氛中猝灭和恢复,且可循环多次。此外,LPL强度在两种不同条件之间也会发生切换,肉眼可直观辨别,从而实现通过LPL对挥发性物质进行视觉传感。功能性MOF中光致发光与酸碱的视觉LPL切换行为的这种结合,可能为刺激响应、防伪和加密应用提供一条有效途径。