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Role of manganese in red long-lasting phosphorescence of manganese-doped diopside for in vivo imaging

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dc.contributor.author Lecointre, A.
dc.contributor.author Bessiere, A.
dc.contributor.author Priolkar, K.R.
dc.contributor.author Gourier, D.
dc.contributor.author Wallez, G.
dc.contributor.author Viana, B.
dc.date.accessioned 2015-06-04T04:09:32Z
dc.date.available 2015-06-04T04:09:32Z
dc.date.issued 2013
dc.identifier.citation Materials Research Bulletin. 48(5); 2013; 1898-1905. en_US
dc.identifier.uri http://dx.doi.org/10.1016/j.materresbull.2013.01.017
dc.identifier.uri http://irgu.unigoa.ac.in/drs/handle/unigoa/2999
dc.description.abstract Materials with red long-lasting phosphorescence, such as MnII-doped diopsides, can be used for small animal in vivo imaging. CaMgSi2O6:Mn powders with various amounts of Mn were prepared by sol-gel to investigate their long-lasting phosphorescence mechanism. X-ray diffraction, X-ray absorption fine and near-edge structure and electron paramagnetic resonance showed that manganese is quantitatively introduced in the structure as MnII. Most of the Mn doping ions substitute Mg and possess a highly elongated octahedral environment. While photoluminescence and X-ray excited optical luminescence spectra show both orange (585 nm) and red (685 nm) 4T1 (4G) to 6A1 (6S) emission of MnIICa and MnIIMg, respectively, MnIIMg red emission dominates long-lasting phosphorescence and thermally stimulated luminescence spectra. These results point to MnIIMg as the preferential hole trap and recombination center in the long-lasting phosphorescence mechanism. An intense persistent red emission suitable for in vivo imaging probes is obtained for the highest nominal Mn content (7.5 percent). en_US
dc.publisher Elsevier en_US
dc.subject Physics en_US
dc.title Role of manganese in red long-lasting phosphorescence of manganese-doped diopside for in vivo imaging en_US
dc.type Journal article en_US
dc.identifier.impf y


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