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金在硅片上的无粘附层附着及其在基于局域表面等离子体共振的生物传感中的应用。

Adhesion layer-free attachment of gold on silicon wafer and its application in localized surface plasmon resonance-based biosensing.

作者信息

Bhattarai Jay K, Neupane Dharmendra, Nepal Bishal, Alharthi Mansour D, Demchenko Alexei V, Stine Keith J

机构信息

Department of Chemistry and Biochemistry, University of Missouri-St. Louis, Saint Louis, MO 63121, USA.

出版信息

Sens Actuators A Phys. 2020 Sep 1;312. doi: 10.1016/j.sna.2020.112155. Epub 2020 Jun 10.

DOI:10.1016/j.sna.2020.112155
PMID:32647405
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7347289/
Abstract

The use of a metallic adhesion layer between plasmonic-active nanostructures and a solid supported is known to dampen the plasmonic response. To overcome this problem, organic adhesion layers have been introduced, which in turn can undermine the stability of the film. Moreover, both types of layers limit the regeneration of the nanostructures for multiple uses. Here we report a quick and simple approach to prepare intermediate adhesion layer-free binding of nanostructured films of gold on silicon wafers. The approach involves scratching and etching of the silicon wafer before sputter coating with a thin layer of Au. The plasmonic-active nanostructures were then prepared on this thin Au film using electrochemical deposition. As-prepared plasmonic-active nanostructured thin films of gold (PANTF-Au) are easy to handle, physically robust, and can be regenerated. The bulk refractive index sensitivity of PANTF-Au is 150 nm/RIU with the figure of merit 1.4, and with a plasmonic field-decay length of 27 nm. We further used these thin films to study interactions between lectin and glycoprotein inside a flow cell as well as on a microplate made of PANTF-Au. The PANTF-Au can be easily integrated with electrochemical devices and microfluidics, which can help to pave the way toward the development of ideal optical-electrochemical point-of-care biosensors.

摘要

已知在等离子体活性纳米结构与固体支撑物之间使用金属粘附层会抑制等离子体响应。为克服这一问题,已引入有机粘附层,而这反过来又会破坏薄膜的稳定性。此外,这两种类型的层都限制了纳米结构多次使用的再生能力。在此,我们报告一种快速且简单的方法,用于在硅片上制备无中间粘附层的金纳米结构薄膜结合。该方法包括在溅射涂覆薄金层之前对硅片进行刮擦和蚀刻。然后使用电化学沉积在该薄金膜上制备等离子体活性纳米结构。所制备的金等离子体活性纳米结构薄膜(PANTF-Au)易于处理,物理性能稳定,并且可以再生。PANTF-Au的体折射率灵敏度为150 nm/RIU,品质因数为1.4,等离子体场衰减长度为27 nm。我们进一步使用这些薄膜研究流动池内以及由PANTF-Au制成的微孔板上凝集素与糖蛋白之间的相互作用。PANTF-Au可以很容易地与电化学装置和微流体集成,这有助于为开发理想的光-电化学即时护理生物传感器铺平道路。

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