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dc.contributor.authorNandi, Mahasweta and others-
dc.date.accessioned2021-05-28T11:19:24Z-
dc.date.available2021-05-28T11:19:24Z-
dc.date.issued2019-09-
dc.identifier.citationNew J. Chem., 2019, 43, 15563en_US
dc.identifier.urihttps://vbudspace.lsdiscovery.in/xmlui/handle/123456789/110-
dc.description.abstractRhodamine 6G functionalized mesoporous silica (RFMS) has been used for the selective sensing of Al3+, Cr3+ and Fe3+ ions. RFMS has been characterized via FT-IR spectroscopy, PXRD, N2-adsorption/ desorption, TEM, 13C and 29Si solid state NMR, and absorption and fluorescence spectroscopy studies. The amount of organic moieties incorporated into the silica matrix has been ascertained via TGA. RFMS shows no absorption band in the visible region in the absence of any other cations, but in the presence of Al3+, Cr3+ and Fe3+, it exhibits a band at 528 nm. The intensity of this peak increases with the increase in the metal ion concentration. The fluorescence intensity of RFMS at 550 nm is enhanced significantly in the presence of Al3+, Cr3+ and Fe3+ ions in water/ethanol (14 : 1, v/v) (lex = 500 nm). No other metal ion is able to induce any enhancement in the emission intensity. The quantum yield and lifetime of RFMS increase considerably in the presence of these trivalent cations. The naked eye detection of these cations is possible through monitoring the color change of RFMS from colorless to pinkish orange under visible light, while under UV light the color change occurs from bluish to fluorescent greenish. The opening of the spirolactam ring of RFMS is induced by interactions with these cations, which results in the pink color and strong fluorescence. RFMS has been utilized to separate Al3+, Cr3+ and Fe3+ ions from an aqueous medium with very high removal efficiency (B90%). Its maximum uptake capacities have been determined to be 11.20, 19.72 and 21.55 mg/g for Al3+, Cr3+ and Fe3+ ions, respectively.en_US
dc.language.isoenen_US
dc.publisherRoyal Society of Chemistryen_US
dc.titleRhodamine functionalized mesoporous silica as a chemosensor for the efficient sensing of Al3+, Cr3+ and Fe3+ ions and their removal from aqueous mediaen_US
dc.title.alternativeRoyal Society of Chemistryen_US
dc.typeArticleen_US
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