CSIR-Central Mechanical Engineering Research Institute, M. G. Avenue, Durgapur 713209, India.
Dalton Trans. 2021 Jun 29;50(25):8657-8670. doi: 10.1039/d1dt00705j.
Supramolecular luminescent frameworks with conjugated architectures exhibits interesting photophysical properties with phenomenal chemical and thermal stability. This has instigated global researchers towards its extensive application in toxic analyte detection and the formulation of anti-counterfeit materials. In correlation with this present scenario, luminescent metal-organic frameworks (LMOFs), possessing tailorable structural and functional properties and exceptional physicochemical features, have been categorized as emerging 'smart materials'. Interestingly, LMOFs have assisted in the rapid development of an effectual sensing platform and swift fabrication of anti-counterfeit materials on desirable substrates with the aid of 'Inkjet Printing', which is a viable, low-cost, and high-resolution technology. Inkjet printing is an excellent material deposition technique in the modern era owing to its easy settling over flexible substrates, simplistic emergence of large area image patterns with improved throughput, minimal cost, explicit resolution, and least waste generation. The present review provides state-of-the-art progress on LMOFs based (i) luminescent security ink fabrication with static and dynamic multinodal luminescent materials and (ii) sensory device formulation for the easy and instantaneous recognition of hazardous analytes through the 'Inkjet Printing' technology. This techno-chemical integration will be certainly beneficial to prevent the growth of counterfeit materials and monitor the bioaccumulation of hazardous analytes in our ecological system.
具有共轭结构的超分子发光骨架表现出有趣的光物理性质,具有显著的化学和热稳定性。这促使全球研究人员将其广泛应用于有毒分析物的检测和防伪材料的制备。在这种情况下,具有可调节结构和功能特性以及特殊物理化学特性的发光金属有机骨架(LMOFs)被归类为新兴的“智能材料”。有趣的是,LMOFs 通过“喷墨打印”协助快速开发有效的传感平台和快速在所需基底上制造防伪材料,这是一种可行、低成本、高分辨率的技术。喷墨打印是现代的一种极好的材料沉积技术,因为它易于在柔性基底上沉积,大面积图像模式的简单出现提高了产量,成本最小化,分辨率明确,产生的浪费最少。本综述提供了基于 LMOFs 的最新进展,包括 (i) 使用静态和动态多节点发光材料制造发光安全墨水,以及 (ii) 通过“喷墨打印”技术制备用于轻松即时识别危险分析物的传感装置。这种技术-化学集成肯定有助于防止假冒材料的增长,并监测我们生态系统中危险分析物的生物累积。