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Updated: Sep 17, 2025

Genetically-encoded Molecular Probes to Study G Protein-coupled Receptors
Published on: September 13, 2013
Recent advances in small-molecule fluorescent probes bearing a triaminoguanidinium unit and their sensing,
1State Key Laboratory of Fine Chemicals, Frontier Science Center for Smart Materials, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, P. R. China. tharmalingam91@gmail.com.
Abstract:
Since their discovery, triaminoguanidinium-salicylidene-based Schiff bases have emerged as a significant class of compounds known for their solvent-dependent fluorescence emission, which varies depending on the substituents in their aromatic frameworks. These compounds are easy to synthesize, stable, cost-effective, and highly suitable for diverse applications, including chemosensing, biological studies, and multifunctional uses. This comprehensive review summarizes recent advancements in AIE-active triaminoguanidinium-salicylidene-based threefold symmetric Schiff molecules, particularly their role as chemosensors for detecting various analytes. It explores different chemosensing strategies for identifying metal ions (Zn2+, Cd2+, Cu2+, Fe3+, and Co2+) and anions (EDTA, I- PPi-, and S2-), focusing on the progress of triaminoguanidinium-salicylidene-based threefold symmetric Schiff bases over the past five years, particularly their systems for supramolecular host-guest interactions, AIEgen-ESIPT activity, COFs, bioimaging, etc. We hope this review provides a comprehensive overview of the current research landscape and encourages further exploration of novel triaminoguanidinium-salicylidene-based threefold symmetric Schiff base compounds with expanded applications.
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