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用于电化学检测多巴胺的丝网印刷 MoS 电极的简易制备。

Facile fabrication of screen-printed MoS electrodes for electrochemical sensing of dopamine.

机构信息

Department of Graphic Arts Technology and Applied Photochemistry, Faculty of Chemical and Food Technology, Slovak University of Technology in Bratislava, Radlinského 9, 812 37, Bratislava, Slovak Republic.

Institute of Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, 845 38, Bratislava, Slovak Republic.

出版信息

Sci Rep. 2022 Jul 13;12(1):11900. doi: 10.1038/s41598-022-16187-2.

Abstract

Molybdenum disulfide (MoS) screen-printed working electrodes were developed for dopamine (DA) electrochemical sensing. MoS working electrodes were prepared from high viscosity screen-printable inks containing various concentrations and sizes of MoS particles and ethylcellulose binder. Rheological properties of MoS inks and their suitability for screen-printing were analyzed by viscosity curve, screen-printing simulation and oscillatory modulus. MoS inks were screen-printed onto conductive FTO (Fluorine-doped Tin Oxide) substrates. Optical microscopy and scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM/EDX) analysis were used to characterize the homogeneity, topography and thickness of the screen-printed MoS electrodes. The electrochemical performance was assessed through differential pulse voltammetry. Results showed an extensive linear detection of dopamine from 1 µM to 300 µM (R = 0.996, sensitivity of 5.00 × 10 A μM), with the best limit of detection being 246 nM. This work demonstrated the possibility of simple, low-cost and rapid preparation of high viscosity MoS ink and their use to produce screen-printed FTO/MoS electrodes for dopamine detection.

摘要

二硫化钼(MoS)丝网印刷工作电极被开发用于多巴胺(DA)电化学传感。MoS 工作电极由含有不同浓度和尺寸的 MoS 颗粒和乙基纤维素粘合剂的高粘度丝网印刷油墨制备而成。通过粘度曲线、丝网印刷模拟和动态模量分析了 MoS 油墨的流变性能及其适用于丝网印刷的性能。MoS 油墨被丝网印刷到导电 FTO(掺氟氧化锡)基底上。使用光学显微镜和带有能量色散 X 射线光谱(SEM/EDX)分析的扫描电子显微镜来表征丝网印刷 MoS 电极的均匀性、形貌和厚度。通过差分脉冲伏安法评估了电化学性能。结果表明,多巴胺的广泛线性检测范围为 1 μM 至 300 μM(R=0.996,灵敏度为 5.00×10 A μM),检测限最低可达 246 nM。这项工作证明了简单、低成本和快速制备高粘度 MoS 油墨的可能性,并利用其来生产用于多巴胺检测的丝网印刷 FTO/MoS 电极。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0090/9279398/71516fec6e74/41598_2022_16187_Fig1_HTML.jpg

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