Issue 34, 2013

Site-specific reduction of Bi3+ to Bi2+ in bismuth-doped over-stoichiometric barium phosphates

Abstract

The luminescent properties of bismuth-activated materials depend strongly on the exact valence of the prevalent bismuth species. To create bismuth species with valence lower than trivalent, synthesis must usually be performed in a reducing atmosphere which facilitates the reduction reaction. In this work, we propose an alternative approach where interstitial barium sites are intentionally created in a bismuth-doped barium compound with an open crystal structure. We observe that this leads to the auto-reduction of Bi3+ to Bi2+ even when the sample is prepared under oxidizing conditions. We show that the approach can be generalized to various host matrices, i.e., Ba3(PO4)2, Ba2P2O7:Bi and Sr3(PO4)2. It therefore provides a convenient and highly efficient tool for controlling the valence state of bismuth towards exploiting the rich variety of bismuth-based optical materials.

Graphical abstract: Site-specific reduction of Bi3+ to Bi2+ in bismuth-doped over-stoichiometric barium phosphates

Article information

Article type
Paper
Submitted
05 Jun 2013
Accepted
02 Jul 2013
First published
22 Jul 2013

J. Mater. Chem. C, 2013,1, 5303-5308

Site-specific reduction of Bi3+ to Bi2+ in bismuth-doped over-stoichiometric barium phosphates

M. Peng, J. Lei, L. Li, L. Wondraczek, Q. Zhang and J. Qiu, J. Mater. Chem. C, 2013, 1, 5303 DOI: 10.1039/C3TC31069H

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