Photoluminescence Studies of Europium Doped Di-Strontium Magnesium Silicate Phosphors

R. Shrivastava
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Abstract

This article reports the study of photoluminescence spectra of Di Strontium Magnesium Silicate (Sr2MgSi2O7) doped with various concentration of Europium (Eu3+) prepared using solid-state reaction technique. The doping concentration (s) of Eu3+ were 0.2, 0.5, 1.0, 1.5, 2.0, 2.5 mol% respectively. Excitation spectrum monitored at 620 nm wavelength that exhibited two prominent peaks centered at 256 nm and 277 nm. Peak observed at 277 nm was more intense therefore the emission spectra were monitored at 277. Emission Spectra of all the samples revealed intense peaks centred at 607, 618 and 637 are attributed to 5D0 7F2 of Europium (III) ions accommodated at various lattice sites having different energies. Overall emission was found in the red colour region which was confirmed using a CIE chromaticity diagram with coordinate (0.4805, 0.3763). Critical distance for energy transfer in the concentration, beyond which concentration quenching occurred in PL spectra, was calculated. In this case, the critical distance was found to be 19.87 Å, therefore the mechanism involved in concentration quenching of Sr2MgSi2O7 doped with 2.0 mol % of Europium (III) must be only multipole-multipole exchange whereas the exchange interaction is ineffective.
掺铕硅酸二锶镁荧光粉的光致发光研究
本文报道了采用固相反应技术制备掺不同浓度铕(Eu3+)的硅酸锶镁(Sr2MgSi2O7)的光致发光光谱的研究。Eu3+的掺杂浓度分别为0.2、0.5、1.0、1.5、2.0、2.5 mol%。在620nm波长处检测到两个以256nm和277nm为中心的显著峰。在277 nm处观察到的峰值更强,因此在277处监测发射光谱。所有样品的发射光谱都显示出以607、618和637为中心的强烈峰,这是由于铕(III)离子的5D0 7F2分布在不同的晶格位置,具有不同的能量。在红色区域发现了总体发射,这是用坐标(0.4805,0.3763)的CIE色度图证实的。计算了浓度中能量传递的临界距离,超过此距离后,在PL光谱中会发生浓度猝灭。在这种情况下,发现临界距离为19.87 Å,因此掺入2.0 mol %铕(III)的Sr2MgSi2O7的浓度猝灭机制只能是多极-多极交换,而交换作用是无效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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