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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Site-specific reduction of Bi~(3+) to Bi~(2+) in bismuth-doped over-stoichiometric barium phosphates
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Site-specific reduction of Bi~(3+) to Bi~(2+) in bismuth-doped over-stoichiometric barium phosphates

机译:铋掺杂的超化学计量磷酸钡中Bi〜(3+)到Bi〜(2+)的位点特异性还原

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摘要

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 Bi~(3+) to Bi~(2+) 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.
机译:铋活化材料的发光特性在很大程度上取决于普遍存在的铋物种的确切价态。为了产生化合价低于三价的铋物质,通常必须在还原气氛中进行合成,这有利于还原反应。在这项工作中,我们提出了一种替代方法,其中在具有开放晶体结构的铋掺杂钡化合物中有意创建间隙钡位。我们观察到,即使在氧化条件下制备样品,这也会导致Bi〜(3+)自动还原为Bi〜(2+)。我们表明该方法可以推广到各种宿主矩阵,即Ba3(PO4)2,Ba2P2O7:Bi和Sr3(PO4)2。因此,它为控制铋的价态以开发多种多样的铋基光学材料提供了方便而高效的工具。

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