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用于白光生成的 Dy/Sm/Er 三掺杂多组分硼硅酸盐玻璃中冷至暖白光的能量传递分析与实现。

Energy transfer analysis and realization of cool to warm white light in Dy /Sm /Er triply doped multicomponent borosilicate glass for white light generation.

机构信息

School of Pure and Applied Physics, Mahatma Gandhi University, Kottayam, Kerala, India.

出版信息

Luminescence. 2021 Sep;36(6):1422-1434. doi: 10.1002/bio.4082. Epub 2021 May 20.

Abstract

A series of Dy /Sm /Er triply doped multicomponent borosilicate glasses (DSE) was synthesized using varying Er ions concentrations through a conventional melt quenching technique. The influence of triple doping on the optical characteristics of the prepared glass was evaluated to estimate the possibility of achieving white light emission through optical absorption, photoluminescence excitation (PLE), and emission (PL) measurements. Based on the PLE and PL spectral profiles, the presence of energy transfer processes between Dy , Sm , and Er was confirmed. Furthermore, for Dy /Sm /Er triply doped glass, an enhancement in Er green luminescence and a noticeable decrease in Dy and Sm emissions were detected with the increase in Er concentration. The nature of energy transfer in DSE glass was investigated through Dexter's energy transfer mechanisms and the obtained result suggested that a dipole-dipole interaction was responsible for the dominant Sm to Dy and Dy to Er energy transfer processes. The precise characteristic colours that emanated from the as-prepared samples were evaluated using Commission Internationale de l'Éclairage co-ordinates and correlated colour temperature values and suggested its suitability for white light emission. The quantum efficiency of the prepared glass was determined experimentally. The aforementioned results recommend that the Dy /Sm /Er triply doped multicomponent borosilicate glass irradiated with ultraviolet light sources might be useful for the generation of cool/warm white light-emitting applications.

摘要

采用传统熔融淬火技术,通过改变 Er 离子浓度,合成了一系列 Dy/Sm/Er 三重掺杂多组分硼硅酸盐玻璃(DSE)。评估了三重掺杂对制备玻璃光学特性的影响,以通过光学吸收、光致发光激发(PLE)和发射(PL)测量来估计实现白光发射的可能性。根据 PLE 和 PL 光谱曲线,可以确认 Dy、Sm 和 Er 之间存在能量转移过程。此外,对于 Dy/Sm/Er 三重掺杂玻璃,随着 Er 浓度的增加,检测到 Er 绿光发射的增强和 Dy 和 Sm 发射的明显减少。通过 Dexter 能量转移机制研究了 DSE 玻璃中能量转移的性质,得到的结果表明,偶极-偶极相互作用是 Sm 向 Dy 和 Dy 向 Er 能量转移过程的主要原因。使用国际照明委员会(Commission Internationale de l'Éclairage)坐标和相关色温值评估了从制备样品中发出的精确特征颜色,并表明其适合于白光发射。通过实验确定了制备玻璃的量子效率。上述结果表明,受紫外光源辐照的 Dy/Sm/Er 三重掺杂多组分硼硅酸盐玻璃可能可用于产生冷/暖白光发光应用。

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