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Nanoparticle-Nanocup Array Hybrid Structure with a Tunable Sensitivity for Colorimetric Biosensing

机译:具有比色生物传感可调灵敏度的纳米颗粒-纳米杯阵列混合结构。

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Colorimetric detection is cost-effective and user-friendly when used for sensing target analytes without a need of bulky and expensive equipment. The extraordinary transmission phenomena through plasmonic periodic nanocup arrays achieve colorimetric sensing by detecting color changes of transmitted light associated with the refractive index variation. The application of the nanocup arrays, however, is relatively restricted due to a limited sensitivity for monolayered target analyte detections on the surface. In order to improve the sensitivity bounded by the underlying nanostructures, hybrid nanoparticle (NP) - nanocup array substrates are developed for enhancing the sensitivity to the refractive index change. The three dimensionally assembled Au NPs in circle along the sidewall of each nanocup increases the density of hot spots by the heterogeneous plasmonic coupling between the NP and the edge of the nanocup; thus a small refractive index change at the hot spot becomes easily detected than bare nanocup arrays. In addition to the bulk refractive index sensing, an ultrasensitive spectroscopic detection of the antigen-antibody binding is achieved by this three-dimensional self-assembly of Au NPs on the Au nanocup arrays.
机译:比色检测用于感测目标分析物时,是经济高效且用户友好的,而无需使用笨重且昂贵的设备。通过等离子体周期纳米杯阵列的非凡透射现象通过检测与折射率变化相关的透射光的颜色变化,实现了比色传感。然而,由于对表面上单层目标分析物检测的灵敏度有限,因此纳米杯阵列的应用受到相对限制。为了提高由下面的纳米结构限制的灵敏度,开发了混合纳米颗粒(NP)-纳米杯阵列基板以增强对折射率变化的灵敏度。沿着每个纳米杯的侧壁呈圆形排列的三个三维组装的金纳米颗粒通过纳米颗粒和纳米杯边缘之间的异质等离子体耦合增加了热点的密度;因此,与裸露的纳米杯阵列相比,在热点处的小折射率变化变得容易检测到。除了体折射率感测之外,通过在Au纳米杯阵列上的Au NPs的三维自组装,还可以实现抗原-抗体结合的超灵敏光谱检测。

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