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Novel and Incredibly Facile Low Temperature Solid State Route to Nano-Sized Eu~(3+) Activated BaTiO_3 Phosphors

机译:新型且极其容易的低温固态路线制备纳米级Eu〜(3+)活化BaTiO_3荧光粉

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摘要

Barium titanate (BaTiO3) has widespread applications in various fields of electronics due to its peculiar crystal structure and specific characteristics. For example, BaTiO3 has interesting luminescence characteristics with wavelengths in red regions after introduction of Eu3+. Generically BaTiO3:Eu3+ is synthesized through a high-temperature solid-state reaction that usually results in larger grain sized products. Although various alternative routes have been developed to obtain nano-sized products, they have limitations such as lower yield and needing special equipment and chemicals as well as post heat treatments. On the other hand, water assisted solid state reaction (WASSR) is a low temperature, environmentally friendly, and inexpensive process developed recently. Here, we report a novel WASSR route to synthesize nano-sized Eu3+ activated BaTiO3 at 80 degrees C from readily available raw materials. X-ray diffraction patterns of synthesized phosphor confirmed the formation of cubic phase BaTiO3. STEM EDS mapping of the as-synthesized sample showed an even distribution of host lattice elements as well as activator ion. The synthesized phosphor particles exhibited a size of 10-30 nm with PL and PLE characteristics well matching previous reports. In addition, nano-sized Ba(1-x) TiO3:xEu(3+) (where x = 0.005, 0.01, 0.05, and 0.1) phosphors were synthesized through this novel and incredibly facile WASSR process at a low temperature of 80 degrees C.
机译:钛酸钡(BaTiO3)由于其独特的晶体结构和特殊特性而在电子学的各个领域得到了广泛的应用。例如,在引入Eu3 +之后,BaTiO3具有有趣的发光特性,其波长位于红色区域。通常,BaTiO3:Eu3 +是通过高温固态反应合成的,通常会产生较大的晶粒尺寸的产品。尽管已经开发了各种替代途径来获得纳米级产品,但是它们具有局限性,例如产量较低,需要专用设备和化学品以及后热处理。另一方面,水辅助固态反应(WASSR)是最近开发的低温,环保且廉价的方法。在这里,我们报告了一种新颖的WASSR路线,该路线可以从容易获得的原材料在80摄氏度下合成纳米级Eu3 +活化的BaTiO3。合成磷光体的X射线衍射图证实了立方相BaTiO3的形成。合成样品的STEM EDS谱图显示出主晶格元素和活化剂离子的均匀分布。合成的磷光体颗粒具有10-30 nm的尺寸,其PL和PLE特性与以前的报道非常吻合。此外,通过这种新颖且容易实现的WASSR工艺在80度低温下合成了纳米级Ba(1-x)TiO3:xEu(3 +)(其中x = 0.005、0.01、0.05和0.1)荧光粉C。

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