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亚 1 纳米 CuO-PMA 纳米片增强化学发光用于槲皮素的灵敏检测。

Enhanced chemiluminescence with sub-1 nanometer CuO-PMA nanosheets for the sensitive detection of quercetin.

机构信息

School of Science, China University of Geosciences (Beijing), Beijing, 100083, China.

School of Science, China University of Geosciences (Beijing), Beijing, 100083, China.

出版信息

Anal Chim Acta. 2025 Jan 2;1333:343395. doi: 10.1016/j.aca.2024.343395. Epub 2024 Nov 5.

Abstract

BACKGROUND

Chemiluminescence (CL) analysis, characterized by its simple instrumentation, high signal-to-noise ratio, wide linear range, and minimal background interference, has garnered increasing attention from researchers. Nanomaterials (NMs) have been explored to enhance CL intensity. Notably, sub-1 nanometer scale NMs are considered to hold significant untapped potential due to their size effects. The application of these sub-1 nanometer NMs in enhancing CL is anticipated to yield favorable results. Additionally, the low water solubility and bioavailability of quercetin glycosides lead to their presence in bodily fluids at only trace levels, highlighting the urgent need for efficient and rapid detection methods.

RESULTS

In this work, phosphomolybdic acid (PMA) was incorporated into CuO to synthesize sub-1 nanometer CuO-PMA nanosheets (SNSs) using a cluster-core co-assembly strategy. Conformational and structural characterization confirmed the successful synthesis of these nanosheets. The CuO-PMA SNSs were employed to enhance the CL emission of the luminol-HO system, resulting in an increase of over 1000 times. The catalytic properties of CuO-PMA SNSs significantly facilitated the decomposition of HO, leading to an enhanced production of reactive oxygen species, which in turn induced the CL enhancement. Given that the antioxidant effect of quercetin would consume the reactive oxygen species generated during the catalysis, a decrease in CL intensity was anticipated. A CL sensor for quercetin detection was developed based on the CuO-PMA SNSs-luminol-HO system, demonstrating a strong linear relationship (R = 0.9969) and a low detection limit of 0.31 nM.

SIGNIFICANCE

This research provides a strategy to enhance the CL intensity of the luminol-HO system by using CuO-PMA SNSs, offering a highly sensitive assay for detecting quercetin concentrations. The method is characterized as a simple and cost-effective analytical strategy making CL analysis very attractive for chemical analysts.

摘要

背景

化学发光(CL)分析具有仪器简单、信噪比高、线性范围宽、背景干扰小等特点,越来越受到研究人员的关注。纳米材料(NMs)已被探索用于增强 CL 强度。值得注意的是,亚 1 纳米尺度的纳米材料由于其尺寸效应,被认为具有巨大的未开发潜力。预计将这些亚 1 纳米纳米材料应用于增强 CL 会产生有利的结果。此外,槲皮素糖苷的低水溶性和生物利用度导致它们在体液中的存在仅为痕量水平,这突出表明需要有效的快速检测方法。

结果

在这项工作中,使用团簇-核共组装策略将磷钼酸(PMA)掺入氧化铜中合成亚 1 纳米氧化铜-PMA 纳米片(SNSs)。构象和结构表征证实了这些纳米片的成功合成。CuO-PMA SNSs 被用于增强鲁米诺-HO 体系的 CL 发射,导致增强超过 1000 倍。CuO-PMA SNSs 的催化性质显著促进了 HO 的分解,导致活性氧物种的产生增加,进而诱导 CL 增强。鉴于槲皮素的抗氧化作用会消耗催化过程中产生的活性氧物种,预计 CL 强度会降低。基于 CuO-PMA SNSs-鲁米诺-HO 体系开发了一种用于检测槲皮素的 CL 传感器,表现出很强的线性关系(R = 0.9969)和 0.31 nM 的低检测限。

意义

本研究提供了一种通过使用 CuO-PMA SNSs 增强鲁米诺-HO 体系 CL 强度的策略,为检测槲皮素浓度提供了一种高灵敏度的分析方法。该方法具有简单、经济有效的分析策略的特点,使 CL 分析对化学分析人员非常有吸引力。

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