LED-controlled tuning of ZnO nanowires' wettability for biosensing applications.

Nano reviews Pub Date : 2015-04-07 eCollection Date: 2015-01-01 DOI:10.3402/nano.v6.26711
Kaushalkumar Bhavsar, Duncan Ross, Radhakrishna Prabhu, Pat Pollard
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引用次数: 19

Abstract

Background: Wettability is an important property of solid materials which can be controlled by surface energy. Dynamic control over the surface wettability is of great importance for biosensing applications. Zinc oxide (ZnO) is a biocompatible material suitable for biosensors and microfluidic devices. Nanowires of ZnO tend to show a hydrophobic nature which decelerates the adhesion or adsorption of biomolecules on the surface and, therefore, limits their application.

Methods: Surface wettability of the ZnO nanowires can be tuned using light irradiation. However, the control over wettability using light-emitting diodes (LEDs) and the role of wavelength in controlling the wettability of ZnO nanowires are unclear. This is the first report on LED-based wettability control of nanowires, and it includes investigations on tuning the desired wettability of ZnO nanowires using LEDs as a controlling tool.

Results: The investigations on spectral properties of the LED emission on ZnO nanowires' wettability have shown strong dependency on the spectral overlap of LED emission on ZnO absorption spectra. Results indicate that LEDs offer an advanced control on dynamically tuning the wettability of ZnO nanowires.

Conclusion: The spectral investigations have provided significant insight into the role of irradiating wavelength of light and irradiation time on the surface wettability of ZnO nanowires. This process is suitable to realize on chip based integrated sensors and has huge potential for eco-friendly biosensing and environmental sensing applications.

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生物传感应用中ZnO纳米线润湿性的led控制调谐。
背景:润湿性是固体材料的一项重要性质,可以通过表面能来控制。表面润湿性的动态控制对生物传感应用具有重要意义。氧化锌(ZnO)是一种生物相容性材料,适用于生物传感器和微流体器件。ZnO纳米线具有疏水性,减缓了生物分子在纳米线表面的粘附或吸附,限制了ZnO纳米线的应用。方法:采用光照调节ZnO纳米线的表面润湿性。然而,使用发光二极管(led)控制润湿性以及波长在控制ZnO纳米线润湿性中的作用尚不清楚。这是基于led的纳米线润湿性控制的第一篇报道,其中包括使用led作为控制工具来调节ZnO纳米线所需的润湿性的研究。结果:对ZnO纳米线润湿性上LED发射光谱特性的研究表明,LED发射光谱与ZnO吸收光谱的重叠有很强的依赖性。结果表明,led对动态调节ZnO纳米线的润湿性提供了先进的控制。结论:光谱研究揭示了光照波长和照射时间对ZnO纳米线表面润湿性的影响。该工艺适合实现基于片上的集成传感器,在生态生物传感和环境传感应用方面具有巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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