Jia Ziyi, Zhang Hui, Chen Yuxin, Fang Yuan, Zhang Junnan, Hu Shanwen
Department of Health Inspection and Quarantine, School of Public Health, Fujian Medical University Fuzhou Fujian 350122 P. R. China
RSC Adv. 2024 Jun 19;14(28):19744-19751. doi: 10.1039/d4ra03652b. eCollection 2024 Jun 18.
The detection of hydrogen peroxide (HO) represents an extensive requirement across various domains, including food, environmental, and medical fields. This study introduces a highly sensitive technique for the quantification of HO, integrating the electrochemiluminescence properties of perovskite with bio-catalyzed precipitation. A water-soluble perovskite-based electrochemiluminescence (ECL) biosensing interface was constructed, wherein HO catalyzes a precipitation reaction that leads to the formation of an insoluble precipitate on the electrode surface. This occurrence effectively quenches the electrochemiluminescence signal of the perovskite, thus facilitating the quantitative detection of HO. The modified perovskite demonstrated excellent ECL performance, offering a stable signal source, while the bio-catalyzed precipitation reaction significantly amplified the quenching effect, thereby enhancing detection sensitivity. This strategy exhibits excellent stability and sensitivity, presenting a promising method for the detection of hydrogen peroxide, which holds great potential for applications in various fields.
过氧化氢(HO)的检测在包括食品、环境和医学领域在内的各个领域都有广泛需求。本研究引入了一种用于定量HO的高灵敏度技术,该技术将钙钛矿的电化学发光特性与生物催化沉淀相结合。构建了一种基于水溶性钙钛矿的电化学发光(ECL)生物传感界面,其中HO催化沉淀反应,导致在电极表面形成不溶性沉淀。这种情况有效地淬灭了钙钛矿的电化学发光信号,从而便于对HO进行定量检测。修饰后的钙钛矿表现出优异的ECL性能,提供了稳定的信号源,而生物催化沉淀反应显著放大了淬灭效果,从而提高了检测灵敏度。该策略具有出色的稳定性和灵敏度,为过氧化氢的检测提供了一种有前景的方法,在各个领域具有巨大的应用潜力。