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Metal Nanoparticles/Porous Silicon Microcavity Enhanced Surface Plasmon Resonance Fluorescence for the Detection of DNA

机译:金属纳米粒子/多孔硅微腔增强表面等离子体共振荧光检测DNA

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摘要

A porous silicon microcavity (PSiMC) with resonant peak wavelength of 635 nm was fabricated by electrochemical etching. Metal nanoparticles (NPs)/PSiMC enhanced fluorescence substrates were prepared by the electrostatic adherence of Au NPs that were distributed in PSiMC. The Au NPs/PSiMC device was used to characterize the target DNA immobilization and hybridization with its complementary DNA sequences marked with Rhodamine red (RRA). Fluorescence enhancement was observed on the Au NPs/PSiMC device substrate; and the minimum detection concentration of DNA ran up to 10 pM. The surface plasmon resonance (SPR) of the MC substrate; which is so well-positioned to improve fluorescence enhancement rather the fluorescence enhancement of the high reflection band of the Bragg reflector; would welcome such a highly sensitive in biosensor.
机译:通过电化学刻蚀制备了共振峰波长为635 nm的多孔硅微腔(PSiMC)。金属纳米颗粒(NPs)/ PSiMC增强的荧光底物是通过静电附着在PSiMC中的Au NPs制备的。 Au NPs / PSiMC设备用于特征化目标DNA固定化和杂交,其互补DNA序列标记有罗丹明红(RRA)。在Au NPs / PSiMC器件基板上观察到荧光增强; DNA的最低检测浓度高达10 pM。 MC基板的表面等离子体共振(SPR);它的位置很合适,可以提高荧光增强效果,而不是布拉格反射器高反射带的荧光增强效果;会欢迎生物传感器如此高的灵敏度。

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