In this paper the transformation of one type of photostimulable colour centre (F-centre) into another, depending on the preparation conditions of the storage phosphor BaFBr : Eu 2+ , is investigated. Despite the fact that the quasi-binary phase diagram of BaF 2 -BaBr 2 shows no detectable solid solution for either BaF 2 or BaBr 2 in BaFBr, it will be demonstrated that an imbalance induced on purpose in the bromine/fluorine ratio can alter the shape of the stimulation spectrum from F(F − )- to F(Br − )-centres and vice versa in a subsequent annealing process. It will be demonstrated that such an imbalance can be generated by exposing BaFBr : Eu 2+ to an alcohol/water solution between a sintering step and an annealing step. Thereby the water dissolves BaFBr by removing BaBr 2 from the surface of the grains, leaving an excess of BaF 2 behind. Based on these findings a practical synthesis route will be offered, which can lead to improved phosphor properties. Such properties are a macroscopically single phase of BaFBr : Eu 2+ without detectable BaF 2 or BaBr 2 residuals and solely photostimulable F(Br − )-centres.
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Zimmermann et al. (2004) studied this question.
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