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Silver nanoplates paved PMMA cuvettes as a cheap and re-usable plasmonic sensing device

机译:银纳米板铺设了PMMA比色皿,作为廉价和可用的等离子体传感装置

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Surface plasmon resonance (SPR) sensors find wide applications due to their prompt responses and because they do not need sophisticated instrumentation. One of the most explored effects is the high sensitivity of the plasmon band position due to refractive index changes in the medium. In the following, we present a cost-effective, reusable, and high-responsive SPR device based on silver nanoplate paved PMMA cuvettes. The nano structures were obtained by the seed-growing approach. The localized surface plasmon resonance (LSPR) features, observed in the colloidal state, were successfully transferred to the paved cuvettes and their plasmon sensitivities with liquids of different refractive index were recorded. We observed refractive index sensitivities up to 280 nm/refractive index units, using nanoplates with plasmon resonances in the near-infrared region. The experimental results find correspondence and agreement with extinction cross-section calculated with a Boundary Element Method (BEM) approach. This work addresses how to build a simple, cost-effective optical device, which is suitable for integration and miniaturization.
机译:表面等离子体谐振(SPR)传感器由于它们的迅速响应而找到了广泛的应用程序,因为它们不需要复杂的仪器。最探索的效果之一是由于介质中折射率变化的等离子体带位置的高灵敏度。在下文中,我们介绍了一种基于银纳米层板铺设的PMMA比色皿的经济型有效,可重复使用和高响应的SPR装置。通过种子生长方法获得纳米结构。在胶体状态观察到的局部表面等离子体共振(LSPR)特征成功地转移到铺砌的比色皿及其与不同折射率的液体的等离子体敏感性。在近红外区域中使用具有等离子体共振的纳米板观察到高达280nm /折射率单位的折射率敏感性。实验结果与用边界元法(BEM)方法计算的灭绝横截面的对应关系和协议。这项工作解决了如何构建一个简单,经济高效的光学设备,适用于集成和小型化。

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