首页> 外文期刊>Journal of Nanophotonics >Nanofabrication and plasma polymerization assisted surface modification of a transducer based on localized surface plasmon resonance of gold nanostructure arrays for biosensor applications
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Nanofabrication and plasma polymerization assisted surface modification of a transducer based on localized surface plasmon resonance of gold nanostructure arrays for biosensor applications

机译:基于金纳米结构阵列的局部表面等离振子共振的换能器的纳米加工和等离子体聚合辅助表面修饰,用于生物传感器应用

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The nanofabrication and surface modification of a transducer based on localized surface plasmon resonance (LSPR) of gold nanostructure arrays for biosensing was studied. We used electron beam lithography for the nanopatterning technique, which let us choose LSPR sensor properties by providing immense control over nanostructural geometry. A critical step in the utilization of this transducer is to form a selective biolayer over the gold nanostructures. We applied plasma polymerization and wet chemistry techniques for ethylenediamine (EDA) modification and glutaraldehyde immobilization as intermediate layers, respectively. The gold nanostructure arrays were primarily modified using EDA in order to activate the surface with amine groups that are cross-linked with later added avidin molecules by the help of glutaraldhyde layer residing in between. The success of plasma polymerization was validated with x-ray photoelectron spectroscopy measurements. As a last step, we introduced biotin to the surface (biotin has a high affinity for avidin). We were able to detect the LSPR resonance wavelength shift in the transmission spectra at each step of modification, including the avidin-biotin interaction, which acts as a model for specific molecule detection using LSPR.
机译:研究了基于金纳米结构阵列的局部表面等离子体激元共振(LSPR)的换能器的纳米加工和表面修饰,以进行生物传感。我们将电子束光刻技术用于纳米图案化技术,该技术通过对纳米结构的几何形状提供大量控制,让我们选择LSPR传感器的性能。利用该换能器的关键步骤是在金纳米结构上形成选择性生物层。我们分别将等离子聚合和湿化学技术用于乙二胺(EDA)改性和戊二醛固定化作为中间层。金纳米结构阵列主要使用EDA进行修饰,以通过胺基活化表面,该胺基通过位于其间的戊二醛层与后来添加的亲和素分子交联。等离子体聚合的成功已通过X射线光电子能谱测量得到了验证。最后一步,我们将生物素引入了表面(生物素对亲和素具有很高的亲和力)。我们能够检测到每个修饰步骤在透射光谱中的LSPR共振波长偏移,包括抗生物素蛋白-生物素相互作用,它充当使用LSPR进行特定分子检测的模型。

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