Hybrid microspheres of calcium carbonate/fullerenol were synthesized and characterized. Their morphology depends on the concentration of the fullerenol solutions. XRD and FT-IR measurements proved that the mineral phase is consistently calcite, while fluorescence confocal microscopy indicated that fullerenol is homogenously included in the crystalline matrix.

M. Calvaresi, G. Falini, S. Bonacchi, D. Genovese, S. Fermani, M. Montalti, et al. (2011). Fullerenol entrapment in calcite microspheres. CHEMICAL COMMUNICATIONS, 47, 10662-10664 [10.1039/c1cc13680a].

Fullerenol entrapment in calcite microspheres

CALVARESI, MATTEO;FALINI, GIUSEPPE;BONACCHI, SARA;GENOVESE, DAMIANO;FERMANI, SIMONA;MONTALTI, MARCO;PRODI, LUCA;ZERBETTO, FRANCESCO
2011

Abstract

Hybrid microspheres of calcium carbonate/fullerenol were synthesized and characterized. Their morphology depends on the concentration of the fullerenol solutions. XRD and FT-IR measurements proved that the mineral phase is consistently calcite, while fluorescence confocal microscopy indicated that fullerenol is homogenously included in the crystalline matrix.
2011
M. Calvaresi, G. Falini, S. Bonacchi, D. Genovese, S. Fermani, M. Montalti, et al. (2011). Fullerenol entrapment in calcite microspheres. CHEMICAL COMMUNICATIONS, 47, 10662-10664 [10.1039/c1cc13680a].
M. Calvaresi; G. Falini; S. Bonacchi; D. Genovese; S. Fermani; M. Montalti; L. Prodi; F. Zerbetto
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/105579
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