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Quantum yield of individual nanotubes determined

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Single-walled carbon nanotubes have interesting optical properties, including fluorescence in the near-infrared range. Unfortunately, they tend to clump together during production, quenching their fluorescence to less-than-useful levels. In fact, the quantum yield of heterogeneous mixtures of isolated nanotubes is less than 0.05 percent. To find out whether the same poor performance is true of all individual nanotubes, investigators at DuPont Central Research and Development in Wilmington, Del., and at the University of Rochester and at Cornell University in Ithaca, both in New York,...Read full article

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    Published: December 2007
    Glossary
    fluorescence
    Fluorescence is a type of luminescence, which is the emission of light by a substance that has absorbed light or other electromagnetic radiation. Specifically, fluorescence involves the absorption of light at one wavelength and the subsequent re-emission of light at a longer wavelength. The emitted light occurs almost instantaneously and ceases when the excitation light source is removed. Key characteristics of fluorescence include: Excitation and emission wavelengths: Fluorescent materials...
    single-walled carbon nanotubes
    Referred to as SWCNTs, these cylindrical nanostructures composed of a folded sheet of graphene can be used as near-infrared markers for small animal multiplex imaging. Emitting at different wavelengths, which can be tuned in the visible or NIR region, SWNCTs provide photostable, narrow bandwidth fluorescence in a wide chromatic variety. That enables simultaneous imaging of a large number of spectrally separated markers, through the use of global hyperspectral imaging. In addition to being used...
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