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Updated: Jul 29, 2026

Wide-field Fluorescent Microscopy and Fluorescent Imaging Flow Cytometry on a Cell-phone
Published on: April 11, 2013
Coordination-Regulated Ratiometric Fluorescent Europium(III) Metal-Organic Framework for Smartphone-Integrated Visual
Lei-Ming Dai1,2, Ling Li3, Sheng-Yong You2
1School of Environmental and Chemical Engineering, Nanchang Hangkong University, Nanchang, 330063, P. R. China.
None:
Regulating host-guest interactions between targeted analytes and lanthanide(III)-based metal-organic frameworks (Ln-MOFs) provides an effective strategy for achieving dynamic fluorescence behavior, enabling Ln-MOFs with attractive ratiometric sensing behavior. In this work, we demonstrate a 3D chain-based Eu-MOF {[Eu4(NBC)6·(μ2-H2O)2·(H2O)4]·2H2O}n, constructed from 2,6-naphthalenedicarboxylic acid (H2NBC), which exhibits fluorescent dynamics behavior for the online and visual detection of anthrax biomarker 2,6-dipicolinic acid (DPA) via a coordination-induced strategy. Owing to photoinduced electron transfer (PET), competitive absorption, and coordination interactions, the Eu-MOF displays dual-emission signals from H2NBC ligands and Eu3+ centers, endowing it with superior ratiometric fluorescence sensing performance, including exceptional selectivity and high sensitivity (Ksv = 1.90 × 104 M-1), low LOD of 0.080 μM, and rapid response (60 s). Furthermore, a distinct colorimetric transition from red to blue under UV light enables naked eye detection of DPA, facilitating the development of portable Eu-MOF hydrogels for real-time monitoring. Additionally, a smartphone-integrated platform utilizing RGB analysis is developed for online DPA detection, while a Eu-MOF@PU film is designed for practical visual trace detection. Notably, the Eu-MOF demonstrates excellent recovery rates of 97.7-105.9% in tap water and 99.7-111.3% in Poyang Lake water for DPA detection, confirming its reliability for real-world applications.
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