Department of Chemistry, Burke Laboratory, 41 College Street, Dartmouth College, Hanover, NH 03755, USA.
Chem Soc Rev. 2021 Dec 13;50(24):13498-13558. doi: 10.1039/d1cs00600b.
Sensitive and selective detection of chemical and biological analytes is critical in various scientific and technological fields. As an emerging class of multifunctional materials, covalent organic frameworks (COFs) with their unique properties of chemical modularity, large surface area, high stability, low density, and tunable pore sizes and functionalities, which together define their programmable properties, show promise in advancing chemical detection. This review demonstrates the recent progress in chemical detection where COFs constitute an integral component of the achieved function. This review highlights how the unique properties of COFs can be harnessed to develop different types of chemical detection systems based on the principles of chromism, luminescence, electrical transduction, chromatography, spectrometry, and others to achieve highly sensitive and selective detection of various analytes, ranging from gases, volatiles, ions, to biomolecules. The key parameters of detection performance for target analytes are summarized, compared, and analyzed from the perspective of the detection mechanism and structure-property-performance correlations of COFs. Conclusions summarize the current accomplishments and analyze the challenges and limitations that exist for chemical detection under different mechanisms. Perspectives on how future directions of research can advance the COF-based chemical detection through innovation in novel COF design and synthesis, progress in device fabrication, and exploration of novel modes of detection are also discussed.
敏感和选择性地检测化学和生物分析物在各个科学和技术领域都至关重要。作为一类新兴的多功能材料,共价有机骨架(COFs)具有独特的化学模块性、大表面积、高稳定性、低密度以及可调节的孔径和功能等特性,这些特性共同定义了其可编程性质,有望推动化学检测的发展。本综述展示了 COFs 作为实现功能的一个组成部分的化学检测方面的最新进展。本综述强调了如何利用 COFs 的独特性质,根据颜色变化、发光、电传导、色谱、光谱等原理,开发不同类型的化学检测系统,以实现对各种分析物的高灵敏度和选择性检测,这些分析物包括气体、挥发性物质、离子和生物分子。从 COFs 的检测机制和结构-性能关系的角度,总结了针对目标分析物的检测性能的关键参数,并进行了比较和分析。总结了不同机制下化学检测的当前成就,并分析了存在的挑战和局限性。还讨论了通过创新的新型 COF 设计和合成、器件制造的进展以及探索新的检测模式,如何推动基于 COF 的化学检测的未来发展方向。