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基于HKUST-1衍生的CuO纳米针作为新型发光体的用于灵敏检测儿茶酚和木犀草素的二元放大电化学发光传感器。

Binary-amplifying electrochemiluminescence sensor for sensitive assay of catechol and luteolin based on HKUST-1 derived CuO nanoneedles as a novel luminophore.

作者信息

Wang Beibei, Zhao Wenrui, Wang Lin, Kang Kai, Li Xianrui, Zhang Duo, Ren Jujie, Ji Xueping

机构信息

School of Pharmacy, Hebei Medical University, Shijiazhuang, 050017, China.

Department of Chemistry, School of Sciences, Hebei University of Science and Technology, Shijiazhuang, 050018, China.

出版信息

Talanta. 2024 Jun 1;273:125836. doi: 10.1016/j.talanta.2024.125836. Epub 2024 Mar 7.

Abstract

Herein, a highly novel and effective electrochemiluminescence (ECL) sensor based on metal-organic framework (MOF, HKUST-1) derived CuO nanoneedles (HKUST-1 derived CuO NNs), gold nanoparticles (AuNPs) and TiO was developed for ultrasensitive detection of catechol and luteolin. The HKUST-1 derived CuO NNs were employed as luminophore for the first time, which were successfully fabricated by using HKUST-1 as precursor. The results revealed that the HKUST-1 derived CuO NNs exhibit excellent ECL activity ascribed to its abundant active site and the high specific surface area, thus obviously promoting the separation and transfer of charge and further improving the current density of ECL sensor. To binary-amplify the signal of the ECL sensor, the AuNPs and TiO nano-materials with good biocompatibility, great electron transport efficiency and high catalytic activity were used as co-reaction accelerators in the ECL process. Dependent on the above brilliant strategy, the proposed ECL sensor achieved wide linear ranges from 3 × 10 - 1 × 10 M for catechol and 1 × 10 - 2 × 10 M for luteolin, with the detection limits of 1.5 × 10 M for catechol and 5.3 × 10 M for luteolin, respectively. Furthermore, the ECL sensor exhibited outstanding selectivity, repeatability, stability and obtained great feedback on determination of catechol and luteolin in actual samples. The method not only filled a gap in the ECL application of MOF-derived materials but also provided a novel sight for design other highly efficient luminescent materials.

摘要

在此,开发了一种基于金属有机框架(MOF,HKUST-1)衍生的CuO纳米针(HKUST-1衍生的CuO NNs)、金纳米颗粒(AuNPs)和TiO的高度新颖且有效的电化学发光(ECL)传感器,用于超灵敏检测儿茶酚和木犀草素。HKUST-1衍生的CuO NNs首次被用作发光体,它是通过使用HKUST-1作为前驱体成功制备的。结果表明,HKUST-1衍生的CuO NNs因其丰富的活性位点和高比表面积而表现出优异的ECL活性,从而明显促进了电荷的分离和转移,并进一步提高了ECL传感器的电流密度。为了对ECL传感器的信号进行二元放大,具有良好生物相容性、高电子传输效率和高催化活性的AuNPs和TiO纳米材料被用作ECL过程中的共反应促进剂。基于上述出色的策略,所提出的ECL传感器对儿茶酚的线性范围为3×10⁻¹×10⁻⁶ M,对木犀草素的线性范围为1×10⁻²×10⁻⁶ M,儿茶酚的检测限为1.5×10⁻⁸ M,木犀草素的检测限为5.3×10⁻⁹ M。此外,该ECL传感器表现出出色的选择性、重复性、稳定性,并在实际样品中儿茶酚和木犀草素的测定中获得了良好的反馈。该方法不仅填补了MOF衍生材料在ECL应用方面的空白,还为设计其他高效发光材料提供了新的视角。

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