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Surface patterning of multilayer graphene by ultraviolet laser irradiation in biomolecule sensing devices

机译:在生物分子传感装置中通过紫外线激光辐照多层石墨烯的表面图案

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The study presents a direct process for surface patterning of multilayer graphene on the glass substrate as a biosensing device. In contrast to lithography with etching, the proposed process provides simultaneous surface patterning of multilayer graphene through nanosecond laser irradiation. In this study, the multilayer graphene was prepared by a screen printing process. Additionally, the wavelength of the laser beam was 355 nm. To perform the effective laser process with the small heat affected zone, the surface patterns on the sensing devices could be directly fabricated using the laser with optimal control of the pulse overlap at a fluence threshold of 0.63 J/cm(2). The unique patterning of the laser-ablated surface exhibits their electrical and hydrophilic characteristics. The hydrophilic surface of graphene-based sensing devices was achieved in the process with the pulse overlap of 90%. Furthermore, the sensing devices for controlling the electrical response of glucose by using glucose oxidase can be used in sensors in commercial medical applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:该研究提出了一种在玻璃基板上作为生物传感装置的多层石墨烯表面构图的直接方法。与具有蚀刻的光刻相反,所提出的工艺通过纳秒激光辐照提供多层石墨烯的同时表面图案化。在这项研究中,多层石墨烯是通过丝网印刷工艺制备的。另外,激光束的波长为355nm。为了在较小的热影响区上执行有效的激光处理,可以使用激光以在0.63 J / cm(2)的注量阈值下对脉冲重叠进行最佳控制的方式,直接在传感设备上制造表面图案。激光烧蚀表面的独特图案具有其电和亲水特性。在该过程中,以90%的脉冲重叠实现了基于石墨烯的传感设备的亲水表面。此外,通过使用葡萄糖氧化酶来控制葡萄糖的电响应的感测设备可以用于商业医疗应用中的传感器中。 (C)2015 Elsevier B.V.保留所有权利。

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