Novel nanoceria in situ-derived porphyrin heterostructure enhanced electrochemiluminescent and colorimetric dual-mode detection of tetracycline residue in foods.
Xueran Shi, Yingbo Cao, Lin Cong, Tiance Gu, Jing Wang, Qian Han
Food chemistry
Abstract
Due to serious harm caused by tetracycline (TC) residue to human health, here a multifunctional nanoceria in situ-derived porphyrin heterogeneous framework (CeO2-POF) was innovatively applied to an electrochemiluminescence (ECL) and colorimetric dual-mode sensing platform for TC detection. Concretely, the CeO2-POF fully interprets a "kill three birds with one stone" strategy. Firstly, CeO2-POF integrated ECL luminophore ("bird" one) and co-reaction accelerator ("bird" two), obtaining a 1.6-fold stronger ECL emission than that of tetrakis (4-carboxyphenyl) porphyrin (TCPP) ligand. Secondly, compared with two self-separated signal probes, the single CeO2-POF heterostructure exhibited enhanced ECL and peroxidase-like properties ("bird" three). CeO2-POF showed high catalytic activity against H2O2 and TMB, with color changes monitored via smartphone. Under optimized conditions, the dual-mode sensor for TC achieved a satisfied ECL detection limit of 0.57 pM and a colorimetric detection limit of 0.52 nM. Compared with the commercial ELISA kit, the dual-mode sensing strategy exhibited satisfactory recovery in foods.