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使用银纳米粒子墨水的圆珠笔、含碳纳米管墨水的马克笔和石墨铅笔在纸基底上全手写电极。

Fully handwritten electrodes on paper substrate using rollerball pen with silver nanoparticle ink, marker pen with carbon nanotube ink and graphite pencil.

机构信息

Departamento de Ciências Naturais, Universidade Federal de São João del-Rei, UFSJ, São João del-Rei, MG, CEP 36307-352, Brazil.

Laboratório de Eletroquímica e Nanotecnologia Aplicada, Instituto de Ciência e Tecnologia, Universidade Federal dos Vales do Jequitinhonha e Mucuri, Rodovia MGT 367, Km 583, 5000, Alto da Jacuba, Diamantina, MG 39100-000, Brazil.

出版信息

Anal Methods. 2022 May 19;14(19):1880-1888. doi: 10.1039/d2ay00373b.

Abstract

Herein, a so-called carbon nanotube (CNT) electrode was printed in on a paper substrate using the handwriting technique and carbon nanotube ink in a marker pen to print the working electrode, graphite pencil to print the counter electrode and graphite/silver nanoparticle (AgNP) ink in a rollerball pen to print the quasi-reference electrode. The carbon nanotube electrode was characterized scanning electron microscopy. The electrode was optimized based on the type of paper, hydrophobic barrier and number of layers. In summary, the optimized parameters included the use of matte paper with a mineral spirit layer. The number of carbon nanotube layers to achieve the best electrochemical performance was 25. The final graphite electrode was a miniaturized and flexible paper-based electrochemical electrode. To evaluate the electrical properties of the electrodes, the ohmic resistance of each ink was tested using a multimeter and the obtained values were 18.62 kΩ for the CNT ink, 1.53 Ω for the AgNP ink and 3.53 kΩ for the graphite trace. These results indicate the good conductivity of each synthesized ink used in the fabrication of the CNT electrode. Finally, the electrode was used to measure the electrochemical response of different concentrations of K[Fe(CN)]. Then, a calibration curve was obtained from the voltammograms and linearity was observed in the range of 0.5-3.5 mM. This suggests that the CNT electrode has the potential to be used as an amperometric electrode.

摘要

本文采用手写技术和马克笔中的碳纳米管墨水在纸基底上打印所谓的碳纳米管(CNT)电极,用铅笔打印对电极,用滚珠笔中的石墨/银纳米颗粒(AgNP)墨水打印准参比电极。使用扫描电子显微镜对碳纳米管电极进行了表征。根据纸张类型、疏油层和层数对电极进行了优化。总之,优化的参数包括使用带有矿物油层的哑光纸。实现最佳电化学性能的碳纳米管层数为 25 层。最终的石墨电极是一种小型化和灵活的基于纸张的电化学电极。为了评估电极的电气性能,使用万用表测试了每种墨水的欧姆电阻,得到的 CNT 墨水的电阻值为 18.62 kΩ,AgNP 墨水的电阻值为 1.53 Ω,石墨痕迹的电阻值为 3.53 kΩ。这些结果表明,在 CNT 电极的制造中使用的每种合成墨水都具有良好的导电性。最后,该电极用于测量不同浓度的 K[Fe(CN)]的电化学响应。然后,从伏安图中获得校准曲线,并观察到在 0.5-3.5 mM 的范围内呈现线性关系。这表明 CNT 电极有可能用作电流安培电极。

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