Suppr超能文献

KBi(PO)(MoO):Eu 荧光粉的近全量子效率的发光和猝灭。

Luminescence and Luminescence Quenching of KBi(PO)(MoO):Eu Phosphors with Efficiencies Close to Unity.

机构信息

Department of Analytical and Environmental Chemistry, Vilnius University , Naugarduko 24, LT-03225 Vilnius, Lithuania.

出版信息

ACS Appl Mater Interfaces. 2016 Nov 23;8(46):31772-31782. doi: 10.1021/acsami.6b11766. Epub 2016 Nov 8.

Abstract

A very good light emitting diode (LED) phosphor must have strong absorption, high quantum efficiency, high color purity, and high quenching temperature. Our synthesized KBi(PO)(MoO):Eu phosphors possess all of the mentioned properties. The excitation of these phosphors with the near-UV or blue radiation results in a bright red luminescence dominated by the D → F transition at ∼615 nm. Color coordinates are very stable when changing Eu concentration or temperature in the range of 77-500 K. Furthermore, samples doped with 50% and 75% Eu showed quantum efficiencies close to 100% which is a huge benefit for practical application. Temperature dependent luminescence measurements showed that phosphor performance increases with increasing Eu concentration. KEu(PO)(MoO) sample at 400 K lost only 20% of the initial intensity at 77 K and would lose half of the intensity only at 578 K. Besides, the ceramic disks with thicknesses of 0.33 and 0.89 mm were prepared from KEu(PO)(MoO) powder, and it turned out that they efficiently converted the radiation of 375 nm LED to the red light. The conversion of 400 nm LED radiation to the red light was not complete; thus, the light sources with various tints of purple color were obtained. The combination of ceramic disks with 455 nm LED yielded the light sources with tints of blue color due to the low absorption of ceramic disk in this spectral range. In addition, these phosphors possess a very unique emission spectra; thus, they could also be applied in luminescent security pigments.

摘要

一种非常好的发光二极管(LED)荧光粉必须具有强吸收、高量子效率、高颜色纯度和高猝灭温度。我们合成的 KBi(PO)(MoO):Eu 荧光粉具有所有提到的性质。用近紫外或蓝光辐射激发这些荧光粉,会导致明亮的红色发光,主要由∼615nm 的 D→F 跃迁主导。当 Eu 浓度或温度在 77-500K 的范围内变化时,色坐标非常稳定。此外,掺杂 50%和 75%Eu 的样品显示出接近 100%的量子效率,这对实际应用有很大的好处。温度依赖的发光测量表明,随着 Eu 浓度的增加,荧光粉性能增加。KEu(PO)(MoO)样品在 400K 时仅在 77K 时损失初始强度的 20%,而在 578K 时仅损失一半强度。此外,厚度分别为 0.33 和 0.89mm 的 KEu(PO)(MoO)粉末陶瓷盘被制备出来,事实证明它们可以有效地将 375nm LED 的辐射转换为红光。400nm LED 辐射的转换并不完全;因此,获得了各种色调的紫光光源。由于陶瓷盘在该光谱范围内的吸收较低,因此将陶瓷盘与 455nm LED 结合使用可产生色调为蓝色的光源。此外,这些荧光粉具有非常独特的发射光谱;因此,它们也可以应用于发光安全颜料。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验