Synthesis and spectroscopic studies of chiral CdSe quantum dots

Using microwave irradiation, water soluble, optically active, penicillamine (Pen) capped CdSe nanocrystals with broad spectral distribution (430-780 nm) of photoluminescence have been produced and studied by a range of instrumental techniques including absorption, circular dichroism and both steady...

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Veröffentlicht in:Journal of materials chemistry 2010-10, Vol.2 (38), p.835-8355
Hauptverfasser: Gallagher, Shane A, Moloney, Mícheál P, Wojdyla, Michal, Quinn, Susan J, Kelly, John M, Gun'ko, Yurii K
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Sprache:eng
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Zusammenfassung:Using microwave irradiation, water soluble, optically active, penicillamine (Pen) capped CdSe nanocrystals with broad spectral distribution (430-780 nm) of photoluminescence have been produced and studied by a range of instrumental techniques including absorption, circular dichroism and both steady state and time resolved photoluminescence spectroscopy. The photoluminescence of these nanocrystals is attributed to emission from surface defect states. The decay of the excited state in the nanosecond region, which can be analysed as a triple exponential, depends strongly on the emission wavelength selected, but only weakly on the excitation wavelength. Using microwave irradiation, water soluble, optically active, penicillamine (Pen) capped CdSe nanocrystals with broad spectral distribution (430-780 nm) of photoluminescence have been produced and studied by a range of instrumental techniques including absorption, circular dichroism and steady state and time resolved photoluminescence spectroscopy.
ISSN:0959-9428
1364-5501
DOI:10.1039/c0jm01185a