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Preparation and Characterization of Perforated SERS Active Array for Particle Trapping and Sensitive Molecular Analysis

机译:用于颗粒捕获和敏感分子分析的多孔SERS活性阵列的制备和表征

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摘要

A gold-coated array of flow-through inverse pyramids applicable as substrate for entrapment and immobilization of micro-objects and for surface enhanced Raman spectroscopic measurements was fabricated using bulk micromachining techniques from silicon. Surface morphology, optical reflectance, immobilization properties, and surface enhanced Raman amplification of the array were modelled and characterized. It was found that the special perforated periodic 3D structure can be used for parallel particle and cell trapping and highly sensitive molecular analysis of the immobilized objects.
机译:使用硅的整体微机械加工技术制造了一个镀金的流通反金字塔阵列,该阵列可作为基质用于捕获和固定微物体以及用于表面增强拉曼光谱测量。对阵列的表面形态,光学反射率,固定特性和表面增强拉曼扩增进行了建模和表征。已发现,特殊的穿孔周期性3D结构可用于并行的粒子和细胞捕获以及固定对象的高灵敏度分子分析。

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