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http://hub.abes.fr/acs/periodical/langd5/2003/volume_19/issue_3/101021la0263561/authorship/1
http://hub.abes.fr/acs/periodical/jpcbfk/2007/volume_111/issue_39/101021jp074790b/authorship/2
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http://hub.abes.fr/acs/periodical/jpcbfk/2005/volume_109/issue_1/101021jp047550u/authorship/1
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Microviscosities at the Porous Cage of Silica Gel−Glasses and Ormosils throughFluorescence Anisotropy
Enhanced Emission of Nile Red Fluorescent Nanoparticles Embedded in Hybrid Sol−GelGlasses
Urease Functionalized Silica: A Biohybrid Substrate To Drive Self-Mineralization
Biocompatible Sol−Gel Route for Encapsulation ofLiving Bacteria in Organically Modified Silica Matrixes
Rhodamine 19 Fluorescent Dimers Resulting from DyeAggregation on the Porous Surface of Sol−Gel SilicaGlasses
Reply to Comment on “Highly Fluorescent Rhodamine BNanoparticles Entrapped in Hybrid Glasses”
Freezing of Binary Colloidal Systems for the Formation ofHierarchy Assemblies
Structure and Dynamics of Lysozyme Encapsulated in a Silica Sol−Gel Matrix
Preferred Formation of Coplanar Inclined FluorescentJ-Dimers in Rhodamine 101 Doped Silica Gels
A Novel and Simple Alcohol-Free Sol−GelRoute for Encapsulation of Labile Proteins
Bacteria Viability in Sol−Gel Materials Revisited: Cryo-SEM as aSuitable Tool To Study the Structural Integrity of EncapsulatedBacteria
Study of the Adsorption Process of Sulforhodamine B onthe Internal Surface of Porous Sol−Gel Silica Glassesthrough Fluorescence Means
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