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Eu3+摻雜螢石礦物的發光與其晶體結構關系

Relationship between Luminescence and Crystal Structure of Eu3+doped Fluorite

  • 摘要: 對螢石礦物進行摻雜灼燒.制備了一種新型礦物發光材料螢石:Eu3+.根據Eu3+的熒光光譜與局域對稱性的關系,結合空間群中等效點系的對稱性分析,可以推斷該體系中主要存在2類發光中心,其格位對稱性分別為C4V,和C3V.Eu3+離子進入CaF2晶格,與Ca2+離子不等價置換,由于電荷補償,Eu3+周圍常常存在間隙Fi-的缺陷機制,間隙的存在,降低了局域對稱性(由Oh降低為C4V。或C3V),打破了宇稱選擇定則,促進了Eu3+離子的發光.

     

    Abstract: According to the relationship between luminescent properties and local symmetry of Eu3+, together with the site symmetry of symmetrically equivalent points in space group, it can be inferred that there are mainly two kinds of emission centers, which have the C4v or C3v site symmetry respectively, in fluorite:Eu3+ system. The Eu3+ ion requires charge compensation, because it enters the cubic site in a heterovalent substitution for the Ca2+ ion. The charge-compensating defects, such as the predominant interstitial Fi-, influence the local environment of the Eu3+ ions and, in particular, modify the site symmetry. The existence of Fi- round the Eu3+ ion reduces the Oh symmetry to C4v or C3v, which breaks the parity selection rules and promotes the luminescence of fluorite:Eu3+ samples.

     

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