Issue 13, 2024

Molecular design and architectonics towards film-based fluorescent sensing

Abstract

The past few decades have witnessed encouraging progress in the development of high-performance film-based fluorescent sensors (FFSs) for detecting explosives, illicit drugs, chemical warfare agents (CWAs), and hazardous volatile organic chemicals (VOCs), among others. Several FFSs have transitioned from laboratory research to real-world applications, demonstrating their practical relevance. At the heart of FFS technology lies the sensing films, which play a crucial role in determining the analytes and the resulting signals. The selection of sensing fluorophores and the fabrication strategies employed in film construction are key factors that influence the fluorescence properties, active-layer structures, and overall sensing behaviors of these films. This review examines the progress and innovations in the research field of FFSs over the past two decades, focusing on advancements in fluorophore design and active-layer structural engineering. It underscores popular sensing fluorophore scaffolds and the dynamics of excited state processes. Additionally, it delves into six distinct categories of film fabrication technologies and strategies, providing insights into their advantages and limitations. This review further addresses important considerations such as photostability and substrate effects. Concluding with an overview of the field's challenges and prospects, it sheds light on the potential for further development in this burgeoning area.

Graphical abstract: Molecular design and architectonics towards film-based fluorescent sensing

Article information

Article type
Review Article
Submitted
14 Apr 2024
First published
05 Jun 2024

Chem. Soc. Rev., 2024,53, 6960-6991

Molecular design and architectonics towards film-based fluorescent sensing

R. Huang, T. Liu, H. Peng, J. Liu, X. Liu, L. Ding and Y. Fang, Chem. Soc. Rev., 2024, 53, 6960 DOI: 10.1039/D4CS00347K

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