Routray Supriya, Acharya Subhadeep, Nayak Laxmipriya, Pattnaik Simran, Satapathy Rashmirekha
Department of Chemistry, Ravenshaw University Cuttack-753003 Odisha India
RSC Adv. 2025 Apr 1;15(13):9910-9951. doi: 10.1039/d5ra01232e. eCollection 2025 Mar 28.
Pollution from mercury ions (Hg) continues to pose a significant threat to the environment and public health because of its extreme toxicity and bioaccumulative nature. BODIPY-based compounds are emerging as strong candidates for creating selective and sensitive chemosensors for mercury ion detection. Their structural tunability facilitates the introduction of various functional groups, improving their binding affinity and specificity toward mercury ions. This review elucidates various sensing mechanisms and provides comprehensive insights into the performance of these sensors, particularly with regard to selectivity, sensitivity, and detection limits. The synthetic routes for synthesizing the chemosensors are mentioned in detail. Given their reliability and flexibility, BODIPY-based sensors are poised to make significant contributions in the fields of both sensors and analytical chemistry.
汞离子(Hg)污染因其极高的毒性和生物累积性,持续对环境和公众健康构成重大威胁。基于硼二吡咯亚甲基(BODIPY)的化合物正成为用于创建选择性和灵敏性汞离子检测化学传感器的有力候选物。它们的结构可调性便于引入各种官能团,提高其对汞离子的结合亲和力和特异性。本综述阐明了各种传感机制,并全面深入地探讨了这些传感器的性能,特别是在选择性、灵敏度和检测限方面。详细介绍了合成化学传感器的合成路线。鉴于其可靠性和灵活性,基于BODIPY的传感器有望在传感器和分析化学领域做出重大贡献。