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Au–Nitrogen-Doped Graphene Quantum Dot Composites as On–Off Nanosensors for Sensitive Photo-Electrochemical Detection of Caffeic Acid

机译:Au-氮掺杂的石墨烯量子点复合材料作为开关纳米传感器用于咖啡酸的敏感光电化学检测

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摘要

Herein, gold–nitrogen-doped graphene quantum dot (Au/NGQD) composite modified electrodes were fabricated and applied as “on–off” nanosensors for the photo-electrochemical (PEC) detection of caffeic acid under visible-light irradiation. An effective and simple strategy was established for the preparation of Au/NGQD composites by hydrothermal and calcination methods. Owing to the quantum confinement effect of NGQDs, the local surface plasmon resonance (LSPR) effect of Au nanoparticles (NPs), and the synergistic effect between Au and NGQDs NPs, the Au/NGQDs showed excellent PEC performance, with wide linear concentration ranges (0.11 to 30.25 μM and 30.25 to 280.25 μM), a low detection limit (0.03 μM), excellent sensitivity, and high stability. The present study may provide an advanced strategy for the simple design of Au/NGQD composites to allow their effective application for selective and sensitive sensing of small biological molecules.
机译:这里,制造金 - 氮掺杂石墨烯量子点(Au / NgQD)复合电极,并施加为可见光照射下光电化学(PEC)检测的“开关”纳米调传料。建立了一种通过水热和煅烧方法制备Au / Ngqd复合材料的有效和简单的策略。由于NGQDS的量子隔音效果,Au纳米颗粒(NPS)的局部表面等离子体共振(LSPR)效应,以及Au和Ngqds NPS之间的协同效应,Au / ngqds显示出优异的PEC性能,具有宽线性浓度范围( 0.11至30.25μm和30.25至280.25μm),检测极限(0.03μm),良好的灵敏度和高稳定性。本研究可以为简单的AU / NGQD复合材料设计提供先进的策略,以便他们有效地应用小生物分子的选择性和敏感感。

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