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贵金属纳米棒在分析和生物分析应用中的最新进展。

Recent advances in analytical and bioanalysis applications of noble metal nanorods.

机构信息

Applied Molecular Receptors Group (AMRg), IQAC-CSIC, Networking Research Center on Bioengineering, Biomaterials and Nanomedicine, Jordi Girona, 18-26, 08034 Barcelona, Spain.

出版信息

Anal Bioanal Chem. 2010 Nov;398(6):2451-69. doi: 10.1007/s00216-010-3937-8. Epub 2010 Jul 20.

Abstract

In the last decade the use of anisotropic nanoparticles in analytical and bioanalytical applications has increased substantially. In particular, noble metal nanorods have unique optical properties that have attracted the interest of many research groups. The localized surface plasmon resonance (LSPR) generated by interaction of light at a specific wavelength with noble metal nanoparticles was found to depend on particle size and shape and on the constituting material and the surrounding dielectric solution. Because of their anisotropic shape, nanorods are characterized by two LSPR peaks: the transverse, fixed at approximately 530 nm, and the longitudinal, which is in the visible-near infra-red region of the spectrum and varies with nanorod aspect ratio. The intense surface plasmon band enables nanorods to absorb and scatter light in the visible and near infra-red regions, and fluorescence and two-photon induced luminescence are also observed. These optical properties, with the reactivity towards binding events that induce changes in the refractive index of the surrounding solution, make nanorods a useful tool for tracking binding events in different applications, for example assembly, biosensing, in-vivo targeting and imaging, and single-molecule detection by surface-enhanced Raman spectroscopy. This review presents the promising strategies proposed for functionalizing gold nanorods and their successful use in a variety of analytical and biomedical applications.

摘要

在过去的十年中,各向异性纳米粒子在分析和生物分析应用中的使用有了实质性的增长。特别是,贵金属纳米棒具有独特的光学性质,引起了许多研究小组的兴趣。在特定波长的光与贵金属纳米粒子相互作用时产生的局域表面等离子体共振(LSPR)被发现取决于粒子的大小和形状以及组成材料和周围的介电溶液。由于其各向异性的形状,纳米棒的特征在于两个 LSPR 峰:横向峰,固定在大约 530nm 左右,以及纵向峰,它在光谱的可见光-近红外区域,并且随纳米棒的纵横比而变化。强烈的表面等离子体带使纳米棒能够在可见光和近红外区域吸收和散射光,并且还观察到荧光和双光子诱导发光。这些光学性质,以及对结合事件的反应性,这些结合事件会引起周围溶液折射率的变化,使得纳米棒成为跟踪不同应用中结合事件的有用工具,例如组装、生物传感、体内靶向和成像,以及通过表面增强拉曼光谱进行单分子检测。这篇综述介绍了用于功能化金纳米棒的有前途的策略及其在各种分析和生物医学应用中的成功应用。

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