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Published on: January 9, 2017
Guest-Dependent Luminescent Gallium Metal-Organic Framework for Ultrasensitive Detection of Nerve Agent Simulant
Chen-Chen Xing1, Dan Li1, Shun-Fu Du1
1Key Laboratory of Applied Surface and Colloid Chemistry (MOE), School of Chemistry & Chemical Engineering, Shaanxi Normal University, Xi'an, Shaanxi 710062, China.
Abstract:
Metal-organic frameworks (MOFs) offer a structurally tunable platform for luminescent sensing, where both the pore environment and ligand conformation may play key roles in governing photophysical behavior. Herein, we report a porous Ga-based MOF (SNNU-130) constructed from a conformationally flexible perylene diimide (PDI) derivative for ultrasensitive detection of the nerve agent simulant diethyl chlorophosphate (DCP). SNNU-130 exhibits pronounced solvent-dependent emission, with fluorescence decreasing with solvent polarity in aprotic media but increasing in protic solvents. This contrasting behavior gives rise to a rare polarity-regulated fluorescence "turn-on" response toward DCP, most notably in acetone, where the material achieves an ultralow detection limit of 0.98 ppb and an extrahigh apparent enhancement constant of 1.24 × 106 M-1. Mechanistic studies suggest that DCP most likely acts as a pore-confined functional guest, perturbing the local conformation and packing of the PDI linkers and thereby modulating the excited-state relaxation behavior of the framework, making fluorescence emission more favorable. These findings establish a guest-modulated conformation-driven sensing mechanism and provide a foundation for designing next-generation MOF-based fluorescent probes for nerve agent detection.

