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3D Pen: A low-cost and portable tool for manufacture of 3D-printed sensors

机译:3D笔:用于制造3D印刷传感器的低成本和便携式工具

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摘要

3D printing has been revolutionizing the development of electrochemical devices. Here, 3D pens are proposed for sensor manufacturing as a simpler instrumentation than 3D printers (Fused deposition modeling) for the first time. To illustrate this approach, sensors containing a single working electrode and three-electrode-integrated were manufactured using a 3D pen, which extruded a conductive composite of carbon black (CB) and polylactic acid (PLA) inside molds created into a copper board. After polishing and an electrochemical activation (EA) in NaOH solution, the 3D-pen-printed sensors showed electrochemical responses comparable to glassy carbon electrode for model analytes. The electrode surface (before and after EA) was characterized by scanning electron microscopy, cyclic voltammetry and electrochemical impedance spectroscopy. The manufacture reproducibility of the 3D-pen-printed electrodes was similar to those fabricated in a 3D printer (RSD < 20 % vs 8 %; n = 10). Such sensors are very stable (robust) over time and in acid/basic electrolytes. The analytical feasibility was evaluated for the simultaneous detection of Cd(Ⅱ) and Pb(Ⅱ) by anodic stripping voltammetry, paracetamol by batch injection analysis with amperometric detection and ascorbic acid by square wave voltammetry. The cost per device is very low (< US$ 0.10), once the fabrication requires negligible amounts of conductive filaments and simple apparatus. 3D pen is a promising tool for sensors development in anywhere, due to its portability and low-price (around US$ 15). Moreover, sensors may be developed over common substrates (not 3D-printed), dispensing the acquisition of a 3D printer or the need of knowledge in modeling/slicing softwares.
机译:3D打印一直在彻底改变电化学装置的发展。这里,3D型是第一次作为比3D打印机(融合沉积建模)更简单的仪器的传感器制造。为了说明这种方法,使用3D笔制造包含单个工作电极和三电极整体的传感器,其挤出炭黑(Cb)的导电复合物和在铜板中产生的模具中的模具中的聚乳酸(PLA)。在抛光和NaOH溶液中的电化学激活(EA)之后,3D笔印刷传感器显示与模型分析物的玻璃碳电极相当的电化学响应。通过扫描电子显微镜,循环伏安法和电化学阻抗光谱来表征电极表面(EA之前和EA)。 3D笔印刷电极的制造再现性与3D打印机中制造的电极相似(RSD <20%Vs 8%; n = 10)。随着时间的推移和酸/碱性电解质,这种传感器非常稳定(鲁棒)。通过用方形波伏安法通过分批喷射分析和抗坏血酸同时检测通过阳极溶出伏安法,通过分批喷射分析来同时检测CD(Ⅱ)和Pb(Ⅱ)的分析可行性。一旦制造需要可忽略量的导电细丝和简单的装置,每设备的成本非常低(

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