Mechanisms of Tenebrescence and Persistent Luminescence in Synthetic Hackmanite Na8Al6Si6O24(Cl,S)2

Synthetic hackmanites, Na8Al6Si6O24(Cl,S)2, showing efficient purple tenebrescence and blue/white persistent luminescence were studied using different spectroscopic techniques to obtain a quantified view on the storage and release of optical energy in these materials. The persistent luminescence emi...

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Veröffentlicht in:ACS applied materials & interfaces 2016-05, Vol.8 (18), p.11592-11602
Hauptverfasser: Norrbo, Isabella, Gluchowski, Pawel, Hyppänen, Iko, Laihinen, Tero, Laukkanen, Pekka, Mäkelä, Jaakko, Mamedov, Fikret, Santos, Hellen S, Sinkkonen, Jari, Tuomisto, Minnea, Viinikanoja, Antti, Lastusaari, Mika
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container_issue 18
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container_title ACS applied materials & interfaces
container_volume 8
creator Norrbo, Isabella
Gluchowski, Pawel
Hyppänen, Iko
Laihinen, Tero
Laukkanen, Pekka
Mäkelä, Jaakko
Mamedov, Fikret
Santos, Hellen S
Sinkkonen, Jari
Tuomisto, Minnea
Viinikanoja, Antti
Lastusaari, Mika
description Synthetic hackmanites, Na8Al6Si6O24(Cl,S)2, showing efficient purple tenebrescence and blue/white persistent luminescence were studied using different spectroscopic techniques to obtain a quantified view on the storage and release of optical energy in these materials. The persistent luminescence emitter was identified as impurity Ti3+ originating from the precursor materials used in the synthesis, and the energy storage for persistent luminescence was postulated to take place in oxygen vacancies within the aluminosilicate framework. Tenebrescence, on the other hand, was observed to function within the Na4(Cl,S) entities located in the cavities of the aluminosilicate framework. The mechanism of persistent luminescence and tenebrescence in hackmanite is presented for the first time.
doi_str_mv 10.1021/acsami.6b01959
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title Mechanisms of Tenebrescence and Persistent Luminescence in Synthetic Hackmanite Na8Al6Si6O24(Cl,S)2
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