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Fluorescent organosilica micro- and nanoparticles with controllable size
Authors:Vogel Robert  Surawski Peter P T  Littleton Bradley N  Miller Chris R  Lawrie Gwendolyn A  Battersby Bronwyn J  Trau Matt
Institution:Nanotechnology and Biomaterials Centre, Australian Institute for Bioengineering and Nanotechnology, University of Queensland, Brisbane, QLD 4072, Australia. r.vogel1@uq.edu.au
Abstract:This paper reports on the synthesis of uniformly dye-doped organosilica particles with narrow size distribution. The particle size can be controlled from tenths of nanometers up to several micrometers, whilst still maintaining monodispersity. Microparticles were observed to swell in various solvents up to approximately 2.5 times their original volume, suggesting the presence of a gel-like internal structure. As shown by confocal microscopy, this morphological control of particle swelling has important implications for the encoding of the nano/micro particles with organic dyes, such as rhodamine B isothiocyanate. Swelling allows the dye to penetrate the organosilica matrix and produce uniformly dye-doped nano- and microparticles. Finally, we suggest a coagulation model for the particle formation which significantly differs from conventional St?ber synthesis.
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