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Plasmonic DNA-Origami Nanoantennas for Surface-Enhanced Raman Spectroscopy

机译:用于表面增强拉曼光谱的等离子DNA折纸纳米天线

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摘要

We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient probes for surface-enhanced Raman spectroscopy (SERS). The nanoantenna is built up by two gold nanoparticles that are linked together by a three-layered DNA origami block at a separation distance of 6 nm in order to achieve plasmonic coupling and the formation of a plasmonic “hot spot”. The plasmonic properties of the hybrid structure are optically characterized by dark-field imaging and polarization-dependent spectroscopy. SERS measurements on molecules that are embedded in the DNA origami that bridges the nanoantenna gap were performed in order to demonstrate the excellent performance of these structures for enhancing spectroscopic signals. A strong enhancement of the Raman signal was recorded from measurements on single hot spots compared to measurements in bulk. Finally, we show that the laser polarization with respect to the dimer orientation has a strong impact on the SERS performance.
机译:我们报告说,由DNA折纸制成的等离子纳米天线可以用作表面增强拉曼光谱(SERS)的可靠且有效的探针。纳米天线由两个金纳米颗粒构成,它们通过三层DNA折纸块以6 nm的分隔距离连接在一起,以实现等离子体耦合和等离子体“热点”的形成。通过暗场成像和偏振相关光谱在光学上表征了杂化结构的等离子体性能。为了证明这些结构在增强光谱信号方面的出色性能,对嵌入在折叠纳米天线间隙的DNA折纸中的分子进行了SERS测量。与批量测量相比,在单个热点上的测量记录了拉曼信号的强烈增强。最后,我们证明了相对于二聚体取向的激光偏振对SERS性能有很大的影响。

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