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906239

Sigma-Aldrich

Gold nanorods

25 nm diameter, FITC and NHS functionalized, powder

Sinônimo(s):

Dye labeled gold nanoparticles, FITC labeled gold nanorods, FITC tagged gold nanorods, Fluorescent labeled gold nanoparticles, Au nanorods, Gold nanorod

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About This Item

Número MDL:
Código UNSPSC:
12141717
NACRES:
NA.23

forma

nanorod
powder

diâmetro

25 nm

temperatura de armazenamento

2-8°C

InChI

1S/Au

chave InChI

PCHJSUWPFVWCPO-UHFFFAOYSA-N

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Descrição geral

Gold nanorods (25 nm diameter, FITC and NHS functionalized, powder) are gold based nanoparticles that are elongated along a particular direction. They can be synthesized by seeded growth method. They are widely used in optical imaging due to their facile synthesis, optical properties and compact size.

Aplicação

Owing to size and shape dependent quantum effects, the gold nanoparticles exhibit unique surface plasmon resonance absorption, scattering, fluorescence, and photothermal properties which render them suitable for applications in catalysis, chemical sensing, biosensing , cellular and bioimaging, drug and gene delivery, and photothermal therapy. The fluorescent labeling of gold nanoparticles have been shown to cause emission enhancement in fluorophores. This makes the fluorescence tagged gold nanoparticles a dual mode nanoprobe for drug delivery and bioimaging applications.

Informações legais

Product of Nanopartz Inc.

Pictogramas

Exclamation mark

Palavra indicadora

Warning

Frases de perigo

Classificações de perigo

Skin Sens. 1

Código de classe de armazenamento

13 - Non Combustible Solids

Classe de risco de água (WGK)

WGK 1

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable


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Fluorescently Labeled Gold Nanoparticles with Minimal Fluorescence Quenching.
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Nuri Oh et al.
ACS nano, 8(6), 6232-6241 (2014-05-20)
Significant quantities of synthetic nanoparticles circulating in the body are cleared and retained for long periods of time in the resident macrophages of the mononuclear phagocytic system (MPS), increasing the likelihood of nanoparticle-mediated chronic toxicity. To date, there has been
Xiaohua Huang et al.
Journal of the American Chemical Society, 128(6), 2115-2120 (2006-02-09)
Due to strong electric fields at the surface, the absorption and scattering of electromagnetic radiation by noble metal nanoparticles are strongly enhanced. These unique properties provide the potential of designing novel optically active reagents for simultaneous molecular imaging and photothermal

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