Abstract
This chapter starts with a theoretical description of energy transfer in solids. First we consider single-step energy transfer and later multistep energy migration. The importance of separating the migration process and the trapping process is stressed. Experimental methods are also reviewed. Finally a large number of materials is treated. First those with strongly temperature-dependent energy migration are considered (tungstates, vanadates, Ce3+, Pb3+). Second, compounds with weak or no temperature dependence of the energy migration are reviewed (compounds of the transition metal and trivalent lanthanide ions and hexavalent uranium). It turns out that energy migration in nearly all of these systems is only qualitatively, and not quantitatively understood. Suggestions to improve this situation are given. These relate also to the influence of dimensionality on energy migration.
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Powell, R.C., Blasse, G. (1980). Energy transfer in concentrated systems. In: Luminescence and Energy Transfer. Structure and Bonding, vol 42. Springer, Berlin, Heidelberg. https://doi.org/10.1007/3-540-10395-3_2
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