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Jianding Qiu

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Jul 2026

DNA-Functionalized Covalent Organic Framework for Colorimetric Detection and Adsorption Removal of Uranyl Ions.

Inspired by the modulatable nanozymatic activity of covalent organic frameworks (COFs) by single-stranded DNA (ssDNA), herein, we developed a versatile platform for sensitive/specific colorimetric detection and efficient adsorption of UO22+ based on DNA aptamer-functionalized COFs. Three COFs with varying alkyne contents (Py-BDA, Py-BDA-BPTA, and Py-BPTA) were synthesized, followed by precisely covalent immobilization of UO22+-specific DNA aptamers via click chemistry. These COFs possess intrinsic oxidase-mimicking activity capable of catalyzing TMB oxidation to oxTMB, and the DNA aptamer covalent modification can regulate the enzymatic activity of COFs, with the most suppressing effect for Py-BDA-BPTA. The subsequent UO22+ binding can significantly restore the nanozymatic activity of Py-BDA-BPTA by charge neutralization. This "off-on" switching mechanism enabled sensitive and selective UO22+ detection with a low limit of detection (LOD) about 10 nM (3σ). Moreover, the DNA aptamer-functionalized COFs can be applied for efficient adsorption and removal of UO22+ with rapid kinetics and excellent cycling stability. This study provides novel insights into the postmodification of COFs by biomacromolecules to modulate their mimic enzymatic activity for sensing and adsorption applications.

Zhi-Hao Xue, Zhen-Wen Zhang, Qiang Shi et al. · 0 citations

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