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ZnO-Associated Carbon Dot-Based Fluorescent Assay for Sensitive and Selective Dopamine Detection

机译:ZnO关联的碳点基荧光检测用于灵敏和选择性的多巴胺检测

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摘要

This paper presents a simple and highly efficient method for dopamine detection using water-soluble carbon dot nanoparticles. The ZnO-associated carbon dots (CDZs) were synthesized using a green chemical strategy. An examination of the effects of biomolecules on the fluorescence of CDZs revealed selective dopamine-induced quenching. In a phosphate buffer (pH = 7.4) medium, a detection limit of 1.06 nM was obtained. This “turn off” phenomenon was attributed to the electronic interaction between CDZs and dopamine, during the oxidation of dopamine. At lower pH, however, the effects of dopamine on the fluorescence of CDZs were insignificant as the oxidation of dopamine was hindered when the proton concentration was increased. This method was found to be free from the interference of coexisting molecules, that is, ascorbic acid and uric acid. This sensing platform was applied successfully in biological fluids to confirm the practical significance of the as-designed sensor.
机译:本文提出了一种使用水溶性碳点纳米颗粒检测多巴胺的简单高效方法。使用绿色化学策略合成了与ZnO相关的碳点(CDZ)。对生物分子对CDZs荧光的影响的检查揭示了选择性多巴胺诱导的猝灭。在磷酸盐缓冲液(pH = 7.4)中,检测限为1.06 nM。这种“关闭”现象归因于在多巴胺的氧化过程中CDZ与多巴胺之间的电子相互作用。然而,在较低的pH值下,多巴胺对CDZs荧光的影响微不足道,因为当质子浓度增加时,多巴胺的氧化受到阻碍。发现该方法不受共存分子即抗坏血酸和尿酸的干扰。该传感平台已成功应用于生物流体中,以确认设计传感器的实际意义。

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