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首页> 外文期刊>Journal of nanoscience and nanotechnology >Fabrication and Localized Surface Plasmon Properties of Triangular Gold Nanowell Arrays in a Glass Substrate
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Fabrication and Localized Surface Plasmon Properties of Triangular Gold Nanowell Arrays in a Glass Substrate

机译:玻璃基底中三角形金纳米孔阵列的制备和局部表面等离激元特性

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摘要

Nanowell structure has been attractive in plasmonics, surface enhanced Raman scattering, nanocrystal synthesis, and biomolecular immobilization. Conventional nanowell structures have been carved into continuous thin metal films. This letter focuses on the fabrication and characterization of triangular gold nanowell arrays embedded in a back-filled non-metallic and transparent substrate. The nanowell dimensions can be controlled to produce an optically tunable localized surface plasmon resonance (LSPR) as a plasmonic sensor. AFM and LSPR spectroscopy confirm that the triangular Au nanowell structures are partially embedded in the surface of a transparent glass substrate to protect the shape and sharp features of the nanowell. Experimental spectral results and numerical calculations show that the extinction maximum of the LSPR is located in the NIR range, and correlates linearly with the base thickness of the nanowell. Numerical calculations to analyze the extinction spectrum of gold nanowell show that scattering of the nanostructure is dominant to compare to its absorption. LSPR-tunable nanowells can potentially be used for plasmonic sensors and biomolecular docking system platforms.
机译:纳米孔结构在等离子,表面增强拉曼散射,纳米晶体合成和生物分子固定方面具有吸引力。常规的纳米孔结构已被雕刻成连续的薄金属膜。这封信的重点是嵌入回填非金属和透明基板中的三角形金纳米孔阵列的制造和表征。可以控制纳米孔的尺寸,以产生光学可调的局部表面等离子体共振(LSPR)作为等离子体传感器。 AFM和LSPR光谱证实,三角形Au纳米孔结构部分嵌入了透明玻璃基板的表面,以保护纳米孔的形状和鲜明的特征。实验光谱结果和数值计算表明,LSPR的消光最大值位于NIR范围内,并且与纳米孔的基础厚度线性相关。分析金纳米孔的消光光谱的数值计算表明,与吸收相比,纳米结构的散射占主导。 LSPR可调纳米孔可潜在地用于等离子体传感器和生物分子对接系统平台。

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