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首页> 外文期刊>Angewandte Chemie >Single-Step Reagentless Laser Scribing Fabrication of Electrochemical Paper-Based Analytical Devices
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Single-Step Reagentless Laser Scribing Fabrication of Electrochemical Paper-Based Analytical Devices

机译:电化学纸基分析装置的单步无可效果激光划线制造

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摘要

A single-step laser scribing process is used to pattern nanostructured electrodes on paper-based devices. The facile and low-cost technique eliminates the need for chemical reagents or controlled conditions. This process involves the use of a CO2 laser to pyrolyze the surface of the paperboard, producing a conductive porous non-graphitizing carbon material composed of graphene sheets and composites with aluminosilicate nanoparticles. The new electrode material was extensively characterized, and it exhibits high conductivity and an enhanced active/geometric area ratio; it is thus well-suited for electrochemical purposes. As a proof-of-concept, the devices were successfully employed for different analytical applications in the clinical, pharmaceutical, food, and forensic fields. The scalable and green fabrication method associated with the features of the new material is highly promising for the development of portable electrochemical devices.
机译:单步激光划线工艺用于在纸纸器件上进行纳米结构电极。 容易和低成本技术消除了化学试剂或受控条件的需求。 该方法涉及使用CO2激光来热聚纸板表面,从而产生由石墨烯片和具有铝硅酸盐纳米颗粒的复合材料组成的导电多孔非石墨化碳材料。 广泛表征新的电极材料,它表现出高导电性和增强的主动/几何面积比; 因此非常适合电化学目的。 作为概念验证,该器件成功用于临床,制药,食品和法医领域的不同分析应用。 与新材料的特征相关联的可伸缩和绿色制造方法对于便携式电化学装置的开发具有高度前途。

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