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首页> 外文期刊>ACS applied materials & interfaces >3D Printed Graphene Electrodes' Electrochemical Activation
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3D Printed Graphene Electrodes' Electrochemical Activation

机译:3D印刷石墨烯电极电化学激活

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摘要

Three-dimensional (3D) printing technologies are emerging as an important tool for the manufacturing of electrodes for various electrochemistry applications. It has been previously shown that metal 3D electrodes, modified with metal oxides, are excellent catalysts for various electrochemical energy and sensing applications. However, the metal 3D printing process, also known as selective laser melting, is extremely costly. One alternative to metal-based electrodes for the aforementioned electrochemical applications is graphene-based electrodes. Nowadays, the printing of polymer-/graphene-based electrodes can be carried out in a matter of minutes using cheap and readily available 3D printers. Unfortunately, these polymer/graphene electrodes exhibit poor electrochemical activity in their native state. Herein, we report on a simple activation method for graphene/polymer 3D printed electrodes by a combined solvent and electrochemical route. The activated electrodes exhibit a dramatic increase in electrochemical activity with respect to the [Fe(CN)(6)](4-/3-) redox couple and the hydrogen evolution reaction. Such in situ activation can be applied on-demand, thus providing a platform for the further widespread utilization of 3D printed graphene/polymer electrodes for electrochemistry.
机译:三维(3D)印刷技术作为用于各种电化学应用的电极的重要工具。先前已经表明,用金属氧化物改性的金属3D电极是各种电化学能量和传感应用的优异催化剂。然而,金属3D印刷过程,也称为选择性激光熔化,非常昂贵。用于上述电化学应用的金属基电极的一种替代方案是基于石墨烯的电极。如今,可以在使用便宜的和容易获得的3D打印机的几分钟内进行聚合物/石墨烯基电极的印刷。不幸的是,这些聚合物/石墨烯电极在其天然状态下表现出差的电化学活性。在此,我们通过组合溶剂和电化学路线向石墨烯/聚合物3D印刷电极进行简单的活化方法。活化电极相对于[Fe(CN)(6)](4- / 3-)氧化还原耦合和氢进化反应表现出电化学活性的显着增加。这种原位激活可以按需应用,从而为用于电化学的3D印刷石墨烯/聚合物电极进一步广泛使用平台。

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