Luminescence intensification of lanthanide complexes by silver nanoparticles incorporated in sol-gel matrix
来源期刊:JOURNAL OF RARE EARTHS2009年第4期
论文作者:Viktoria Levchenko Renata Reisfeld Tsiala Saraidarov Marek Pietraszkiewicz
Key words:luminescence intensification; Eu RR-2-P-oxides complexes; silver nanoparticles; silica-polyurethane; zirconia-glymo; particles size distribution; rare earths;
Abstract: We present how the luminescence of europium RR-2-P-oxides complexes can be increased by interaction of electronic levels of the complex with the radiation field of silver nanopatticles (NPs).The procedure by which silver NPs are formed in a sol-gel polyurethane matrix precursor was elaborated.The formed Ag NPs were combined with Eu complex incorporated in ormocer matrix.The emission spectra of the complexes without silver NPs were compared with spectra of the same complexes with addition of silver NPs.As the result of the interaction of the electronic levels of lanthanide ligands with silver plasmons,dramatic increase of luminescence was observed.
Viktoria Levchenko1,Renata Reisfeld1,Tsiala Saraidarov1,Marek Pietraszkiewicz2
(1.Inorganic Chemistry Department,The Hebrew University of Jerusalem,Givat-Ram,91940 Jerusalem,Israel;
2.Institute of Physical Chemistry,Polish Academy of Sciences,01-224 Warsaw,Kasprzaka 44/52,Poland)
Abstract:We present how the luminescence of europium RR-2-P-oxides complexes can be increased by interaction of electronic levels of the complex with the radiation field of silver nanopatticles (NPs).The procedure by which silver NPs are formed in a sol-gel polyurethane matrix precursor was elaborated.The formed Ag NPs were combined with Eu complex incorporated in ormocer matrix.The emission spectra of the complexes without silver NPs were compared with spectra of the same complexes with addition of silver NPs.As the result of the interaction of the electronic levels of lanthanide ligands with silver plasmons,dramatic increase of luminescence was observed.
Key words:luminescence intensification; Eu RR-2-P-oxides complexes; silver nanoparticles; silica-polyurethane; zirconia-glymo; particles size distribution; rare earths;
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