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3D 打印石墨烯电极修饰普鲁士蓝:用于过氧化物检测的新兴电化学传感平台。

3D Printed Graphene Electrodes Modified with Prussian Blue: Emerging Electrochemical Sensing Platform for Peroxide Detection.

机构信息

Institute of Chemistry , University of Campinas , P.O. Box 6154, 13083-970 Campinas , SP , Brazil.

Institute of Chemistry , Federal University of Uberlândia , 38408-100 Uberlândia , MG , Brazil.

出版信息

ACS Appl Mater Interfaces. 2019 Sep 25;11(38):35068-35078. doi: 10.1021/acsami.9b09305. Epub 2019 Sep 10.

Abstract

3D printing technologies have been considered an important technology due to the ease manufacturing of objects, freedom of design, waste minimization, and fast prototyping. In chemistry, this technology potentializes the fabrication of conductive electrodes in large scale for sensing applications. Herein, we reported the modification of a 3D printed graphene electrode with Prussian blue. The modified electrode (3DGrE/PB) was characterized by microscopy (SEM and AFM) and spectroscopic techniques, and its electrochemical properties were compared to the traditional electrodes: glassy carbon, gold, and platinum. The 3DGrE/PB was used in the sensing of hydrogen peroxide in real-world samples of milk and mouthwash, and the results obtained according to the technique of batch-injection analysis were satisfactory for the concentration range typically found in such samples. Thus, 3DGrE/PB can be used as a new platform for sensing of molecular targets.

摘要

3D 打印技术因其易于制造物体、设计自由、减少浪费和快速原型制作而被认为是一项重要技术。在化学领域,这项技术使大规模制造导电电极用于传感应用成为可能。在此,我们报告了用普鲁士蓝对 3D 打印石墨烯电极进行修饰。修饰后的电极(3DGrE/PB)通过显微镜(SEM 和 AFM)和光谱技术进行了表征,并将其电化学性质与传统电极(玻璃碳、金和铂)进行了比较。3DGrE/PB 用于检测牛奶和漱口水中过氧化氢的真实样品,根据批量进样分析技术获得的结果令人满意,适用于此类样品中通常存在的浓度范围。因此,3DGrE/PB 可以用作传感分子靶标的新平台。

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