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基于具有优异电致化学发光稳定性的 AIE 活性聚合物点的超灵敏核酸分析。

Ultrasensitive Nucleic Acid Assay Based on AIE-Active Polymer Dots with Excellent Electrochemiluminescence Stability.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science (MOE), College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Anal Chem. 2021 May 4;93(17):6857-6864. doi: 10.1021/acs.analchem.1c00947. Epub 2021 Apr 23.

Abstract

Aggregation-induced emission (AIE) active Pdots are attractive nanomaterials applied in electrochemiluminescence (ECL) fields, while the irreversible redox reaction of these Pdots is a prevailing problem, resulting in instability of ECL emission. Herein, we first designed and synthesized an AIE-active Pdot with reversible redox property, which contains a tetraphenylethene derivate and benzothiadiazole (BT) to achieve stable ECL emission. BT has a good rigid structure with excellent electrochemical behaviors, which is beneficial for avoiding the destruction of the conjugated structure as much as possible during the preparation of Pdots, thus maintaining good redox property. The tetraphenylethene derivate, as a typical AIE-active moiety, provides a channel for highly efficient luminescence in the aggregated states. The Pdots exhibited reversible and quasi-reversible electrochemical behaviors during cathodic and anodic scanning, respectively. The stable annihilation, reductive-oxidative, and oxidative-reductive ECL signals were observed. Subsequently, we constructed an ultrasensitive ECL biosensor based on the oxidative-reductive ECL mode for the detection of miRNA-21 with a detection limit of 32 aM. This work provides some inspiration for the future design of ECL materials featuring AIE-active property and stable ECL emission.

摘要

聚集诱导发光 (AIE) 活性 Pdots 是应用于电化学发光 (ECL) 领域的有吸引力的纳米材料,然而这些 Pdots 的不可逆氧化还原反应是一个普遍存在的问题,导致 ECL 发光不稳定。在此,我们首次设计并合成了一种具有可逆氧化还原性质的 AIE 活性 Pdot,它包含四苯乙烯衍生物和苯并噻二唑 (BT),以实现稳定的 ECL 发射。BT 具有良好的刚性结构和优异的电化学行为,有利于在制备 Pdots 时尽可能避免共轭结构的破坏,从而保持良好的氧化还原性质。四苯乙烯衍生物作为一种典型的 AIE 活性部分,为聚集态下的高效发光提供了通道。Pdots 在阴极和阳极扫描时分别表现出可逆和准可逆的电化学行为。观察到稳定的湮灭、还原氧化和氧化还原 ECL 信号。随后,我们基于氧化还原 ECL 模式构建了一种超灵敏的 ECL 生物传感器,用于检测 miRNA-21,检测限低至 32 aM。这项工作为未来设计具有 AIE 活性和稳定 ECL 发射的 ECL 材料提供了一些启示。

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