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Controlling the Sensing Volume of Metal Nanosphere Molecular Sensors

机译:控制金属纳米晶体分子传感器的传感量

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Noble metal nanoparticles and nanoshells support surface plasmons at optical frequencies. These resonances, known as localized surface plasmons (LSPs), are sensitive to the dielectric properties of the environment and, in particular, to the refractive index of the material close to the surface of the particle. This sensitivity can be exploited in molecular detection systems that use nanoparticles functionalized with receptors to (a) bind target molecules and (b) optically transduce the resulting change in the dielectric environment. Optimization of an optical nanoparticle sensor involves tailoring the particle to the target so as to maximize the sensitivity of spectroscopic features to the dielectric variation associated with binding of target molecules to the particle surface.
机译:贵金属纳米颗粒和纳米孔在光学频率下支撑表面等离子体。 这些共振称为局部表面等离子体(LSP),对环境的介电性质敏感,并且特别是靠近颗粒表面的材料的折射率。 这种敏感性可以利用在使用与(a)结合靶分子的受体官能化的纳米颗粒和(b)光学地在介电环境中的变化中使用纳米颗粒。 光学纳米颗粒传感器的优化涉及将颗粒定制到目标中,以使光谱特征的敏感性最大化与靶分子与颗粒表面结合相关的介电变化。

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