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Effects of changing the M2+ cation on the crystal structure and optical properties of divalent samarium-doped MAl2Si2O8 (M = Ca, Sr, Ba)

机译:改变M2 +阳离子对二价sa掺杂MAl2Si2O8(M = Ca,Sr,Ba)的晶体结构和光学性能的影响

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摘要

In order to investigate the effects of changing the cation on crystal structure and optical properties of divalent samarium-doped MAl2Si2O8, the Sm2+ doped triclinic CaAl2Si2O8 (CASO), monoclinic SrAl2Si2O8 (SASO) and BaAl2Si2O8 (M-BASO) as well as hexagonal BaAl2Si2O8 (H-BASO) compounds have been synthesized using a polymerizable-complex technique under a reducing atmosphere. At room temperature, under N-UV or blue excitation, Sm2+ doped SASO, M-BASO and H-BASO showed strong red emission, which widens the group of novel red-emitting materials. The emission bands of Sm2+ consist of a broad 4f-5d transition band and sharp f-f transition lines. The correlation between the crystal structure and the 4f-4f transition emission intensity of Sm2+ as well as the excitation peaks of the 5d energy level is discussed in detail, and the theoretical analysis is in good agreement with our experimental results. These are essential to understand the relationship between the crystal structure and luminescence properties, which are fundamental to design luminescent materials of Sm systems.
机译:为了研究改变阳离子对二价sa掺杂的MAl2Si2O8的晶体结构和光学性能的影响,Sm2 +掺杂的三斜晶CaAl2Si2O8(CASO),单斜晶SrAl2Si2O8(SASO)和BaAl2Si2O8(M-BASO)以及六角形BaAl2Si2O H-BASO)化合物已经在还原性气氛下使用可聚合络合物技术合成。在室温下,在N-UV或蓝色激发下,掺杂Sm2 +的SASO,M-BASO和H-BASO表现出强烈的红色发射,从而拓宽了新型红色发射材料的范围。 Sm2 +的发射带由宽的4f-5d过渡带和清晰的f-f过渡线组成。详细讨论了Sm2 +的晶体结构与4f-4f跃迁发射强度以及5d能级激发峰之间的相关性,理论分析与我们的实验结果非常吻合。这些对于理解晶体结构和发光特性之间的关系是必不可少的,这对于设计Sm系统的发光材料至关重要。

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