首页> 外文期刊>Sensors Journal, IEEE >Optical Characterization of a 1-D Nanostructure by Dark-Field Microscopy and Surface Plasmon Resonance to Determine Biomolecular Interactions
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Optical Characterization of a 1-D Nanostructure by Dark-Field Microscopy and Surface Plasmon Resonance to Determine Biomolecular Interactions

机译:一维纳米结构的光学表征,通过暗场显微镜和表面等离子体共振确定生物分子相互作用。

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This paper presents a multifunctional imaging system that combines dark-field microscopy (DFM) with spectroscopy to image nanostructures and identify their optical properties from absorption spectra. The optical resolving power of this system is determined using a 1-D nanostructure with pitches of 120, 390, and 770 nm with four formats of optical disks. These pattern sizes are verified by atomic force microscopy (AFM) first. The results demonstrate that the resolving power of current system setup can down to 86 nm. The resultant DFM images appear to be slightly larger than the AFM images. A 50-nm-thick gold film was then deposited on top of these nanostructures, and their absorption spectra were obtained to elucidate its optical properties, enhanced by surface plasmon resonance. The immobilization of streptavidin on the surface of gold-coated nanostructure causes the absorption spectra to shift from 600 to 610 nm. A protein nanoarray with a dot size of 50 nm was also imaged by DFM, and can be implemented as a potential biochemical diagnostic system on an optical disk format. Specimens of adenocarcinoma cells and ovary cancer cells were also imaged using this DFM system, and the nuclei structure and some cellular organs can be recognized using a 100???????? objective oil lens.
机译:本文提出了一种多功能成像系统,该系统结合了暗场显微镜(DFM)和光谱技术对纳米结构进行成像,并从吸收光谱中识别出它们的光学性质。该系统的光学分辨能力是使用一维纳米结构(具有120、390和770 nm的节距)和四种格式的光盘确定的。这些图案尺寸首先通过原子力显微镜(AFM)进行验证。结果表明,当前系统设置的分辨力可低至86 nm。生成的DFM图像似乎比AFM图像稍大。然后将50纳米厚的金膜沉积在这些纳米结构的顶部,并获得其吸收光谱以阐明其光学特性,并通过表面等离振子共振增强了该特性。链霉亲和素在金包被的纳米结构表面上的固定化导致吸收光谱从600 nm转变为610 nm。 DFM还对点大小为50 nm的蛋白质纳米阵列进行了成像,并可以实现为光盘格式上潜在的生化诊断系统。使用该DFM系统还可以对腺癌细胞和卵巢癌细胞的标本进行成像,并且可以使用100 ????????来识别核结构和某些细胞器官。物镜

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