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Electric-Field Enhanced Molecule Detection in Suspension on Assembled Plasmonic Arrays by Raman Spectroscopy

机译:用拉曼光谱法检测组装的等离子阵列中悬浮的电场增强分子

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摘要

One of the greatest challenges in surface enhanced Raman scattering (SERS) sensing is to detect biochemicals directly from suspension with ultrasensitivity. In this work, we employed strategically designed longitudinal nanocapsule structures with uniformly surface distributed Ag nanoparticles (Ag NPs) to dually focus and enhance SERS sensitivity of biochemicals in suspension assisted with electric fields. By tuning the reaction conditions, Ag NPs were synthesized and uniformly grown with optimized sizes and junctions on the surface of nanocapsules for well reproducible detection. The Ag NPs can further concentrate molecules from suspension due to induced electrokinetic effects in electric fields. As a result, the signals of Nile blue molecules can be enhanced by 34.4±3.1% at optimal alternating current (AC) frequencies and voltages compared to that without electric fields. This work demonstrates the dual roles of a new type of plasmonic NPs for molecule concentration and detection, which could inspire new Raman sensing devices for applications in microfluidics.
机译:表面增强拉曼散射(SERS)传感的最大挑战之一是要以超灵敏性直接从悬浮液中检测生化物质。在这项工作中,我们采用具有均匀表面分布的纳米银纳米颗粒(Ag NPs)的战略性设计的纵向纳米胶囊结构来双重聚焦和增强生化化学物质在电场辅助下的SERS敏感性。通过调节反应条件,合成了Ag NPs,并以优化的大小和纳米胶囊表面上的连接点均匀生长,从而可很好地进行检测。由于在电场中感应的电动效应,Ag NP可以进一步从悬浮液中浓缩分子。结果,与没有电场的情况相比,在最佳交流电(AC)频率和电压下,尼罗蓝分子的信号可以增强34.4±3.1%。这项工作证明了新型等离子NP在分子浓缩和检测中的双重作用,这可能会激发出新的拉曼传感设备在微流体中的应用。

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