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Narrow Energy Gap between Triplet and Singlet Excited States of Sn2+ in Borate Glass

机译:硼酸玻璃中Sn 2 + 的三重态和单重态激发态之间的窄能隙

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Transparent inorganic luminescent materials have attracted considerable scientific and industrial attention recently because of their high chemical durability and formability. However, photoluminescence dynamics of ns2-type ions in oxide glasses has not been well examined, even though they can exhibit high quantum efficiency. We report on the emission property of Sn2+-doped strontium borate glasses. Photoluminescence dynamics studies show that the peak energy of the emission spectrum changes with time because of site distribution of emission centre in glass. It is also found that the emission decay of the present glass consists of two processes: a faster S 1- S 0 transition and a slower T 1- S 0 relaxation, and also that the energy difference between T 1 and S 1 states was found to be much smaller than that of (Sn, Sr)B6O10 crystals. We emphasize that the narrow energy gap between the S 1 and T 1 states provides the glass phosphor a high quantum efficiency, comparable to commercial crystalline phosphors.
机译:透明的无机发光材料由于其高的化学耐久性和可成型性而最近引起了科学和工业的关注。然而,即使氧化物玻璃中的ns 2 型离子具有高量子效率,其光致发光动力学尚未得到很好的检验。我们报告了掺Sn 2 + 的硼酸锶玻璃的发射特性。光致发光动力学研究表明,由于玻璃中发射中心的位置分布,发射光谱的峰值能量随时间变化。还发现,当前玻璃的发射衰减包括两个过程:更快的S 1 -S 0 跃迁和更慢的T 1 跃迁。 >-S 0 弛豫,并且发现T 1 和S 1 态之间的能量差远小于( Sn,Sr)B 6 O 10 晶体。我们强调,S 1 和T 1 态之间的窄能隙为玻璃磷光体提供了与商用结晶磷光体相当的高量子效率。

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