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◆ Talanta2026-09-16

An inner filter effect-based upconversion fluorescence sensor using TPPS-Co2+ complexes for rapid detection of roxithromycin in food.

Xin Li, Canlin Chen, Yiling Wang, Dong Li, Xin Li, Yi Xu, Jie Wei, Xiaomei Chen, Qingmin Chen

原始摘要(英文原文)· Original abstract
An inner filter effect (IFE)-based upconversion fluorescence nanosensor was developed for the sensitive detection of roxithromycin (ROX) residues in food. Core-shell NaYF4,Er@NaYF4 upconversion nanoparticles were used as the fluorescence donor and a tetraphenylporphyrin tetrasulfonic acid cobalt complex (TPPS-Co2+) as the energy acceptor. Owing to the spectral overlap between the UCNP emission at 653 nm and the absorption of TPPS-Co2+, efficient fluorescence quenching was achieved under 980 nm excitation. Upon the addition of ROX, competitive coordination with Co2+ disrupted the TPPS-Co2+ complex, resulting in fluorescence recovery at 653 nm. The recovered fluorescence exhibited a linear response to ROX over the range of 1-1000 ng/mL, with a detection limit of 0.05108 ng/mL. The sensor showed a rapid response (10 min) and excellent selectivity. In honey samples, recoveries ranged from 98.29% to 102.59% with coefficients of variation of 1.15%-5.16%, demonstrating its potential for the rapid determination of ROX residues in food.
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An inner filter effect-based upconversion fluorescence sensor using TPPS-Co2+ complexes for rapid detection of roxithromycin in food. — 科研速览 Science Skim