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钙镁磷酸盐(CaM(PO))晶体中 Eu 自还原引起的键能、位置优先占据和 Eu 共掺杂体系(M = Li, Na, K)。

Bond energy, site preferential occupancy and Eu co-doping system induced by Eu self-reduction in CaM(PO) (M = Li, Na, K) crystals.

机构信息

Hubei Collaborative Innovation Center for Advanced Organochemical Materials, Ministry-of-Education Key Laboratory for the Synthesis and Applications of Organic Functional Molecules, Hubei University, Wuhan, Hubei, China.

出版信息

Dalton Trans. 2018 May 8;47(18):6507-6518. doi: 10.1039/c8dt00749g.

Abstract

Ca10M(PO4)7:Eu (M = Li, Na, K) phosphors have been synthesized via a solid-state reaction process, their phase purity was examined using XRD patterns, and Rietveld refinement confirmed that the Ca10Li(PO4)7, Ca10Na(PO4)7 and Ca10K(PO4)7 are pure phases. The photoluminescence properties of the Ca10M(PO4)7:Eu (M = Li, Na, K) phosphors showed that the self-reduction of Eu3+ to Eu2+ can occur in an air atmosphere. Eu3+ ions can be reduced to Eu2+ ions when doped in Ca10Li(PO4)7, Ca10Na(PO4)7 and Ca10K(PO4)7 crystals, which was detected using photoluminescence spectra. In this work, the bond energy method was used to determine and explain the mechanism of site occupation of Eu entering the host matrix. According to the calculated value of the deviation of bond energy for Eu3+-doped Ca10M(PO4)7 (M = Li, Na, K) crystals, the similar value between and , and , and and can provide the conditions for the self-reduction of Eu3+ in the Ca10M(PO4)7 (M = Li, Na, K) system. Meanwhile, the smaller deviation values of , , and in Ca10Li(PO4)7, Ca10Na(PO4)7, and Ca10K(PO4)7 crystals and in Ca10K(PO4)7 crystals indicated that the preferential sites of Eu ion occupancy in the Ca10M(PO4)7 (M = Li, Na, K) lattices are Li, Na, K and Ca sites. The conclusions obtained from the calculated results of the bond energy method are consistent with the Rietveld refinement and the photoluminescence spectra of Ca10M(PO4)7 (M = Li, Na, K).

摘要

Ca10M(PO4)7:Eu(M=Li,Na,K)荧光粉通过固态反应法合成,通过 XRD 图谱检测其物相纯度,Rietveld 精修证实 Ca10Li(PO4)7、Ca10Na(PO4)7 和 Ca10K(PO4)7 为纯相。Ca10M(PO4)7:Eu(M=Li,Na,K)荧光粉的光致发光性能表明,Eu3+可以在空气气氛中自还原为 Eu2+。Eu3+离子在 Ca10Li(PO4)7、Ca10Na(PO4)7 和 Ca10K(PO4)7 晶体中掺杂时可以被还原为 Eu2+离子,这可以通过光致发光光谱检测到。在这项工作中,使用键能法来确定和解释 Eu 进入宿主基质的占位机制。根据 Eu 掺杂的 Ca10M(PO4)7(M=Li,Na,K)晶体的键能偏离计算值,和之间、和之间、和之间的值相似,为 Ca10M(PO4)7(M=Li,Na,K)体系中 Eu3+的自还原提供了条件。同时,在 Ca10Li(PO4)7、Ca10Na(PO4)7 和 Ca10K(PO4)7 晶体中,以及 Ca10K(PO4)7 晶体中,和、和、和的偏离值较小,表明 Eu 离子在 Ca10M(PO4)7(M=Li,Na,K)晶格中的优先占位是 Li、Na、K 和 Ca 位。键能法计算结果得到的结论与 Rietveld 精修和 Ca10M(PO4)7(M=Li,Na,K)的光致发光光谱一致。

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