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Updated: Mar 28, 2026

Synthesis and Calibration of Phosphorescent Nanoprobes for Oxygen Imaging in Biological Systems
Published on: March 3, 2010
Observation of oxygen dimers via energy transfer from silicon nanoparticles
Gazi N Aliev1, Jamaree Amonkosolpan2, Daniel Wolverson1
1Department of Physics, University of Bath, Bath, BA2 7AY, UK. d.wolverson@bath.ac.uk.
Abstract:
Energy transfer from photo-excited excitons confined in silicon nanoparticles to oxygen dimers adsorbed on the nanoparticle surfaces is studied as a function of temperature and magnetic field. Quenching features in the nanoparticle photoluminescence spectrum arise from energy transfer to the oxygen dimers with and without the emission of Si TO(Δ) phonons and, also, with and without the vibrational excitation of the dimers. The dependence of the quenching on magnetic field shows that energy transfer is fast when a dimer is present, allowing an estimate of the proportion of the nanoparticles with adsorbed dimers.

