Nonradiative Resonance Energy Transfer in Nanoscale Systems and its Practical Application
Journal Title: Фізика і хімія твердого тіла - Year 2014, Vol 15, Issue 3
Abstract
The nonradiative resonant energy transfer in systems containing quantum dots and metal nanoparticles underlies an accurate and sensitive analytical methods. Because the efficiency of energy transfer depends strongly on the distance between the donor and acceptor this phenomenon can be used of imaging or measuring distances at nanoscale. In addition, metal particles embedded between layers of semiconductor can act as a sort of "antenna" for the energy transfer of optical excitation at long distances. Such structures can be used for designing fluorescent light concentrators with a wide spectral absorption corridor. This Feature Article provides an overview of recent advances in the study of resonant energy transfer in systems with semiconductor and metal nanoparticles. Theoretical aspects of resonance energy transfer between simple donor-acceptor pair and in complex systems containing an array of acceptor particles (composite films) is described. We have also collected an examples of the application of nonradiative resonant energy transfer for analytical studies and in the design of fluorescent light concentrators
Authors and Affiliations
N. M. Vyhnan, Yu. B. Khalavka, P. M. Fochuk
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