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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Simple immersion to prepare a Zn/Ag biomimetic superhydrophobic surface and exploring its applications on SERS
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Simple immersion to prepare a Zn/Ag biomimetic superhydrophobic surface and exploring its applications on SERS

机译:简单浸入即可制备Zn / Ag仿生超疏水表面,并探索其在SERS中的应用

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A very simple method for fabricating a superhydrophobic substrate was proposed. Zn foil was first polished and then immersed into an AgNO3 solution to obtain a silver-coated surface (Zn/Ag), which resulted in the formation of micro/ nano-structures. After this substrate was immersed into a solution of 1-dodecanethiol, it exhibited superhydrophobic and low adhesion properties with a high contact angle(up to 167 degrees) and a very low sliding angle (<2 degrees) (Zn/ Ag superhydrophobic surface). This inexpensive and facile process provides a feasible approach to the large-scale production of superhydrophobic surfaces. To better investigate the potential applications for this superhydrophobic surface, a series of surface-enhanced Raman scattering (SERS) spectra were collected as the volume of a drop that was supported on the surface of the substrate decreased. The SERS signal of the molecules in the drop changed regularly, first increasing and then decreasing in intensity, and we achieved the strongest SERS signal using this procedure, which can be utilized to improve the detection limit to a certain degree. This substrate has great potential for applications in highly sensitive SERS assays. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种非常简单的制造超疏水基材的方法。首先抛光锌箔,然后将其浸入AgNO3溶液中以获得镀银表面(Zn / Ag),从而形成微/纳米结构。将此基材浸入1-十二烷硫醇溶液中后,它表现出超疏水性和低粘附性,具有高接触角(最大167度)和非常低的滑动角(<2度)(Zn / Ag超疏水性表面)。这种廉价且容易的方法为大规模生产超疏水表面提供了可行的方法。为了更好地研究这种超疏水表面的潜在应用,随着支撑在基材表面的液滴体积的减少,收集了一系列表面增强拉曼散射(SERS)光谱。液滴中分子的SERS信号有规律地变化,先增加然后减小强度,使用此程序我们获得了最强的SERS信号,可以将其在一定程度上提高检测限。该底物在高度敏感的SERS分析中具有巨大的应用潜力。 (C)2014 Elsevier B.V.保留所有权利。

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