Metal Halide Perovskite Nanocrystals-Intermediated Hydrogel for Boosting the Biosensing Performance.

Li, Hongxia; Hu, Yanan; Zhang, Yan; Zhang, Hao; Yao, Dong; Lin, Yuehe; Yan, Xu · Adv Mater · 2024

basic_science · Level V

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Abstract

Metal-halide perovskites have become attractive nanomaterials for advanced biosensors, yet the structural design remains challenging due to the trade-off between environmental stability and sensing sensitivity. Herein, a trinity strategy is proposed to address this issue by integrating Mn (II) substitution with CsPb<sub>2</sub>Cl<sub>5</sub> inert shell and NH<sub>2</sub>-PEG-COOH coating for designing Mn<sup>2+</sup>-doped CsPbCl<sub>3</sub>/CsPb<sub>2</sub>Cl<sub>5</sub> core/shell hetero perovskite nanocrystals (PMCP PNCs). The trinity strategy isolates the emissive Mn<sup>2+</sup>-doped CsPbCl<sub>3</sub> core from water and the Mn<sup>2+</sup> d-d transition generates photoluminescence with a long lifetime, endowing the NH<sub>2</sub>-PEG-COOH capped Mn<sup>2+</sup>-doped CsPbCl<sub>3</sub>/CsPb<sub>2</sub>Cl<sub>5</sub> PNCs with robust water stability and oxygen-sensitive property. Given the structural integration, photoluminescent hydrogel biosensors are designed by embedding the PMCP PNCs into the hydrogel system to deliver on-site pesticide information on food products. Impressively, benefiting from the dual enzyme triggered-responsive property of PMCP PNCs, the hydrogel biosensor is endowed with ultra-high sensitivity toward chlorpyrifos pesticide at the nanogram per milliliter level. Such a robust PMCP PNCs-based hydrogel sensor can provide accurate pesticide information while guiding the construction of photoluminescent biosensors for upcoming on-site applications.

Medical subject headings