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首页> 外文期刊>ACS applied materials & interfaces >Thermally Stable Plasmonic Nanocermets Grown on Microengineered Surfaces as Versatile Surface Enhanced Raman Spectroscopy Sensors for Multianalyte Detection
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Thermally Stable Plasmonic Nanocermets Grown on Microengineered Surfaces as Versatile Surface Enhanced Raman Spectroscopy Sensors for Multianalyte Detection

机译:微工程化表面上生长的热稳定等离子体纳米金属陶瓷,用于多功能分析物的多功能表面增强拉曼光谱传感器

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摘要

Noble metal nanoparticle-based plasmonic sensors, fabricated by top-down and colloidal routes, are widely used for high sensitivity detection of diverse analyte molecules using surface enhanced Raman spectroscopy (SERS). However, most of these sensors do not show stability under harsh environments, which limits their use as versatile SERS substrates. In this work, we report the first use of plasmonic nanocermets, grown on microengineered Si surfaces, as potential candidates for a highly robust SERS sensor. The robustness of the sensor is attributed to the anchoring of the nanoparticles in the nanocermet, which is an important factor for exploiting its reusability. The fairly uniform distribution of nanoparticles in the sensor led to high enhancement factors (10(6)-10(7)) and enabled the detection of low concentrations of a wide range of analytes, including differently charged biomolecules, which is extremely difficult for other SERS sensors. With more precise control over the particle geometry and distribution, plasmonic nanocermets may play an important role in ultrasensitive SERS measurements in adverse conditions such as high temperature.
机译:通过自上而下和胶体路线制造的基于贵金属纳米粒子的等离子体传感器广泛用于使用表面增强拉曼光谱(SERS)进行各种分析物分子的高灵敏度检测。但是,这些传感器中的大多数在恶劣环境下都无法显示稳定性,这限制了它们作为通用SERS基板的用途。在这项工作中,我们报告了在微工程硅表面上生长的等离激元纳米金属陶瓷首次用作高度坚固的SERS传感器的潜在候选人。传感器的坚固性归因于纳米金属陶瓷中纳米颗粒的锚固,这是开发其可重复使用性的重要因素。纳米粒子在传感器中的相当均匀的分布导致较高的增强因子(10(6)-10(7)),并使得能够检测低浓度的各种分析物,包括带不同电荷的生物分子,这对于其他应用而言是极其困难的SERS传感器。通过更精确地控制颗粒的几何形状和分布,在不利条件(例如高温)下,等离子纳米金属陶瓷可能在超灵敏SERS测量中发挥重要作用。

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