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Owing to size and shape dependent quantum effects, the gold nanoparticles exhibit unique surface plasmon resonance absorption, scattering, fluorescence, and photothermal properties[1][2][3] which render them suitable for applications in catalysis, chemical sensing, biosensing , cellular and bioimaging, drug and gene delivery, and photothermal therapy[1][2][3][4][5][6]. The fluorescent labeling of gold nanoparticles have been shown to cause emission enhancement in fluorophores[7]. This makes the fluorescence tagged gold nanoparticles a dual mode nanoprobe for drug delivery and bioimaging applications[1][8][9].
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Product of Nanopartz Inc.
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危险分类
Skin Sens. 1
储存分类代码
13 - Non Combustible Solids
WGK
WGK 3
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Gold Nanoparticles for In Vitro Diagnostics.
Wen Zhou et al.
Chemical reviews, 115(19), 10575-10636 (2015-06-27)
Xiaohua Huang et al.
Advanced materials (Deerfield Beach, Fla.), 21(48), 4880-4910 (2009-12-28)
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce coherent surface plasmon oscillation of their conduction band electrons, a phenomenon leading to two important properties. Firstly, the confinement of the photon to the
Catherine J Murphy et al.
Accounts of chemical research, 41(12), 1721-1730 (2008-08-21)
Gold, enigmatically represented by the target-like design of its ancient alchemical symbol, has been considered a mystical material of great value for centuries. Nanoscale particles of gold now command a great deal of attention for biomedical applications. Depending on their
Fluorescently Labeled Gold Nanoparticles with Minimal Fluorescence Quenching.
Lu Y, et al.
The Journal of Physical Chemistry C, 114, 17446-17446 (2010)
Gold nanoparticles in chemical and biological sensing.
Krishnendu Saha et al.
Chemical reviews, 112(5), 2739-2779 (2012-02-03)
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