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Improved Localized Surface Plasmon Resonance Immunoassay with Gold Bipyramid Substrates

机译:改进的双金字塔金底物的局部表面等离子体共振免疫测定。

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Gold nanoparticles bound to substrates exhibit localized surface plasmon resonance (LSPR) in their optical extinction spectra at visible and near-infrared wavelengths. The LSPR wavelength is sensitive to the surrounding refractive index, enabling a simple, label-free immunoassay when capture antibodies are bound to the nanoparticles. Gold bipyramids are nanoparticles with a penta-twinned crystal structure, which have a sharp LSPR because of their high monodispersity. Bipyramid substrates were found to have a refractive index sensitivity ranging from 288 to 381 nm/RIU (-0.62 to -0.68 eV/RIU), increasing with the nanoparticle size and aspect ratio. In an immunoassay, the bipyramid substrates yielded higher sensitivity than nanorods and nanospheres. An immunoassay sensitivity constant which depends on both the optical properties of the nanoparticle and conjugation chemistry was found to be K_(LSPR) velence 0.01 nm(centre dot)(mu)m~(2) for gold bipyramids.
机译:结合到基底上的金纳米颗粒在可见光和近红外波长的消光光谱中表现出局部表面等离子体共振(LSPR)。 LSPR波长对周围的折射率敏感,因此当捕获抗体与纳米颗粒结合时,可以进行简单,无标记的免疫测定。金双锥是具有五线孪晶结构的纳米粒子,由于其高单分散性,因此具有尖锐的LSPR。发现双锥体基材的折射率灵敏度在288至381 nm / RIU(-0.62至-0.68 eV / RIU)范围内,随纳米颗粒尺寸和纵横比的增加而增加。在免疫测定中,双锥底物产生的灵敏度高于纳米棒和纳米球。已发现取决于纳米颗粒的光学性质和结合化学的免疫测定灵敏度常数为金双锥体的K_(LSPR)速度为0.01nm(中心点)μm〜(2)。

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