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基于氮化碳负载金纳米粒子的传感器对碘化物和半胱氨酸的电催化效率。

Electrocatalytic efficiency of carbon nitride supported gold nanoparticle based sensor for iodide and cysteine detection.

机构信息

Department of Chemical Sciences, University of Johannesburg, P.O. Box: 524, Auckland Park, 2006, South Africa.

Laboratory of Organic Electronics, Department of Science and Technology, Linköping University, Norrköping, Sweden.

出版信息

Anal Biochem. 2025 Jan;696:115660. doi: 10.1016/j.ab.2024.115660. Epub 2024 Sep 10.

Abstract

Extensive investigations are being conducted on gold nanoparticles focusing on their applications in biosensors, laser phototherapy, targeted drug delivery and bioimaging utilizing advanced detection techniques. In this work, an electrochemical sensor was developed based on graphite carbon nitride supported gold nanoparticles. Carbon nitride supported gold nanoparticles (Au-CN) was synthesized by applying a deposition-precipitation route followed by a chemical reduction technique. The composite system was characterized by X-ray diffraction and X-ray photo electron spectroscopy methods. Electron microscopy analysis confirmed the formation of gold nanoparticles within the size range of 5-15 nm on the carbon nitride support. Carbon nitride supported gold based sensor was employed for the electrochemical detection of iodide ion and l-cysteine. The limit of detection and sensitivity of the sensor was attained 8.9 μM and 0.96 μAμM⁻cm⁻, respectively, for iodide ion, while 0.48 μM and 5.8 μAμM⁻cm⁻, respectively, was achieved for the recognition of cysteine. Furthermore, a paper-based electrochemical device was developed using the Au-CN hybrid system that exhibited promising results in detecting iodide ions, highlighting its potential for economic and portable device applications.

摘要

目前正在对金纳米粒子进行广泛的研究,重点是将其应用于生物传感器、激光光疗、靶向药物输送和生物成像领域,同时利用先进的检测技术。在这项工作中,我们基于石墨相氮化碳负载的金纳米粒子开发了一种电化学传感器。通过采用沉积-沉淀法,随后进行化学还原技术,合成了氮化碳负载的金纳米粒子(Au-CN)。通过 X 射线衍射和 X 射线光电子能谱方法对复合体系进行了表征。电子显微镜分析证实,在氮化碳载体上形成了尺寸在 5-15nm 范围内的金纳米粒子。我们使用基于氮化碳负载金的传感器来电化学检测碘离子和 L-半胱氨酸。该传感器对碘离子的检测限和灵敏度分别达到 8.9μM 和 0.96μAμM⁻cm⁻,而对半胱氨酸的检测限和灵敏度分别达到 0.48μM 和 5.8μAμM⁻cm⁻。此外,我们还使用 Au-CN 杂化系统开发了一种基于纸张的电化学装置,该装置在检测碘离子方面表现出了有前景的结果,突出了其在经济和便携式设备应用方面的潜力。

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