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Complete Additively Manufactured (3D-Printed) Electrochemical Sensing Platform

机译:完整制造(3D印刷)电化学传感平台

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摘要

Herein, we report a complete additively manufactured (AM) electrochemical sensing platform. In this approach, a fully AM/3D-printed electrochemical system, using a conventional low-cost 3D printer (fused deposition modeling) fabricating both the conductive electrodes and the nonconductive/chemically inert electrochemical cell is reported. The electrodes (working, counter, and pseudoreference) are AM using a conductive fused-filament comprised of a mixture of carbon black nanoparticles and polylactic acid (CB/PLA). AM components partially coated with silver ink presented a similar behavior to a conventional Ag/AgCl reference electrode. The performance of the AM working electrode was evaluated after a simple and fast polishing procedure on sandpaper and electrochemical activation in a NaOH solution (0.5 mol L-1). Following the electrochemical activation step, a considerable improvement in the electrochemical behavior (current intensity and voltammetric profile) was obtained for model analytes, such as dopamine, hexaammineruthenium(III) chloride, ferricyanide/ferrocyanide, uric acid, and ascorbic acid. Excellent repeatability (RSD = 0.4%, N = 10) and limit of detection (0.1 mu mol L-1) were obtained with the all complete AM electrochemical system for dopamine analysis. The electrochemical performance of the developed system (after simple electrochemical activation of the working electrode) was similar or better than those obtained using commercial glassy carbon and screen-printed carbon electrodes. The results shown here represents a significant advance in AM (3D printing) technology for analytical chemistry.
机译:在此,我们报告了一种完整的含有瘾制造的(AM)电化学传感平台。在这种方法中,报道了一种完全AM / 3D印刷电化学系统,其使用制造导电电极和非导电/化学惰性电化学电池的传统低成本3D打印机(熔融沉积建模)。电极(工作,计数器和假测)是使用由炭黑纳米颗粒和聚乳酸(CB / PLA)的混合物组成的导电融合细丝。 AM部分涂有银墨的组分向常规Ag / AgCl参考电极呈现了类似的行为。在NaOH溶液中的砂纸和电化学激活的简单且快速的抛光过程中评价AM工作电极的性能(0.5mol L-1)。在电化学激活步骤之后,获得了电化学行为(电流强度和伏安型材)的显着改善,用于模型分析物,例如多巴胺,六氨酸丁烯(III)氯化物,铁氰化物/二氧化锰,尿酸和抗坏血酸。优异的重复性(RSD = 0.4%,N = 10)和检测极限(RSD = 0.4%)和检测极限(0.1μmol1-1),全部完全的电解化学系统进行多巴胺分析。发达系统的电化学性能(在工作电极的简单电化学激活后)比使用商业玻璃碳和丝网印刷的碳电极获得的相似或更好。这里显示的结果代表了AM(3D打印)技术的显着提前,用于分析化学。

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  • 来源
    《Analytical chemistry》 |2019年第20期|共8页
  • 作者单位

    Manchester Metropolitan Univ Fac Sci &

    Engn Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Fac Sci &

    Engn Chester St Manchester M1 5GD Lancs England;

    Univ Fed Uberlandia Inst Chem BR-38400902 Uberlandia MG Brazil;

    Manchester Metropolitan Univ Fac Sci &

    Engn Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Fac Sci &

    Engn Chester St Manchester M1 5GD Lancs England;

    Univ Fed Uberlandia Inst Chem BR-38400902 Uberlandia MG Brazil;

    Manchester Metropolitan Univ Fac Sci &

    Engn Chester St Manchester M1 5GD Lancs England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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