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Facile synthesis of bifunctional Eu3+-activated NaBiF4 red-emitting nanoparticles for simultaneous white light-emitting diodes and field emission displays

机译:用于同时白色发光二极管和场发射显示器的双官能EU3 +活化Nabif4红发射纳米颗粒的容易合成

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摘要

A series of novel Eu3+-activated NaBiF4 nanoparticles were synthesized by an ultra-fast chemical precipitate method at room temperature. Under the excitation of 394 nm, all the compounds emitted glaring red emissions originating from the intra-4f transitions of Eu3+ ions. The optimal doping concentration was found to be 40 mol % and the concentration quenching mechanism was dominated by dipole-dipole interaction. The temperature-dependent photoluminescence emission spectra revealed that the resultant nanoparticles possessed admirable thermal stability with an activation energy of 0.237 eV. The internal quantum efficiency of the synthesized nanoparticles was estimated to be as high as 73.1%. Furthermore, the optical transition parameters of Eu3+ ions were calculated using a facile method based on the Judd-Ofelt theory to explore the local structure environment around the Eu3+ ions in the NaBiF4 host lattice. Additionally, the packaged light-emitting diode (LED) device, which was composed of a near-ultraviolet LED chip, synthesized nanoparticles and commercial blue-emitting/green-emitting phosphors, exhibited brightly white light with high color rendering index of 88.2 and proper correlated color temperature of 6851 K. Ultimately, the studied nanoparticles also had splendid cathodoluminescence properties. These results suggest that the Eu3+-activated NaBiF4 nanoparticles were promising bifunctional materials for simultaneous white LEDs and field emission displays.
机译:通过在室温下通过超快速的化学沉淀法合成了一系列新型EU3 + -Activated Nabif4纳米颗粒。在394nm的激发下,所有化合物都发出了源自Eu3 +离子的4F型转变的辉煌的红色排放。发现最佳掺杂浓度为40摩尔%,浓度猝灭机理由偶极偶极相互作用主导。温度依赖性光致发光发射光谱显示所得纳米颗粒具有0.237eV的活化能量具有令人钦佩的热稳定性。合成纳米颗粒的内量子效率估计高达73.1%。此外,使用基于Judd-elt理论的容纳方法计算Eu3 +离子的光学转变参数,以探讨Nabif4主机晶格中Eu3 +离子周围的局部结构环境。另外,由近紫外LED芯片,合成的纳米颗粒和商业蓝色发光/绿色发光磷光体组成的封装发光二极管(LED)装置表现出明亮的白光,具有88.2的高色渲染指数。相关色温6851 k。最终,研究的纳米粒子也具有辉煌的阴极发光性。这些结果表明EU3 + -Activated Nabif4纳米颗粒是用于同时白色LED和场发射显示的双官能材料。

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