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Fabrication of interdigitated electrodes of graphene oxide/silica by femtosecond laser-induced forward transfer for sensing applications

机译:基于飞秒激光诱导正向转移制备氧化石墨烯/二氧化硅的叉指电极,用于传感应用

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摘要

Graphene-based materials, such as graphene oxide (GO), have been receiving much attention due to their graphene-like properties and compatibility with other materials. At the same time, novel printing methods have been developed for fabricating high-resolution patterns, such as Laser-Induced Forward Transfer (LIFT), which allows microscale transferring of a variety of materials to distinct substrates, enabling the design of micro- and nanodevices for biomedical and opto-electronic application. In this work, we propose the use of LIFT with fs-laser pulses for creating high-resolution interdigitated electrodes of tetraethyl orthosilicate functionalized with GO. The fs-LIFT approach successfully allowed micro-patterning of lines with widths on the order of 2 mu m, with threshold energy of 70 nJ, and the reduction of graphene oxide to fabricate silica/GO films in an efficient, controlled, and localized way, without material degradation. As a proof of principle, interdigitated electrodes fabricated by fs-LIFT were successfully used as the sensing units of an impedimetric electronic tongue for taste recognition and heavy metals ions detection (Al3+, Hg2+, Co2+, and Cu2+) at different concentrations of 100 nmol l(-1), 10 mu mol l(-1), and 1 mmol l(-1).
机译:石墨烯基材料,如氧化石墨烯(GO),由于其类似石墨烯的特性和与其他材料的相容性而受到广泛关注。同时,已经开发了用于制造高分辨率图案的新型打印方法,例如激光诱导正向转移 (LIFT),它允许将各种材料微尺度转移到不同的基材上,从而能够设计用于生物医学和光电应用的微纳米器件。在这项工作中,我们建议使用带有 fs 激光脉冲的 LIFT 来创建用 GO 功能化的正硅酸四乙酯的高分辨率叉指电极。fs-LIFT方法成功地实现了宽度为2 μ m量级、阈值能量为70 nJ的线的微图案化,并还原氧化石墨烯,以高效、可控和局部的方式制造二氧化硅/GO薄膜,而不会降解材料。作为原理验证,成功将fs-LIFT制造的叉指电极用作阻抗电子舌的传感单元,用于不同浓度的100 nmol l(-1)、10 μ mol l(-1)和1 mmol l(-1)的味觉识别和重金属离子(Al3+、Hg2+、Co2+和Cu2+)。

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