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Luminescence enhancement of (Ca,Zn)TiO_3:Pr~(3+) phosphor using nanosized silica powder

机译:纳米二氧化硅粉增强(Ca,Zn)TiO_3:Pr〜(3+)荧光粉的发光

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摘要

The results pertaining to luminescence enhancement due to high-temperature amalgamation of nanometer-sized silica powder and the oxide mixture of calcium, zinc, titanium, and praseodymium are presented. The (Ca,Zn)TiO_3:Pr~(3+) phosphor showed an intense and narrow band emission at ~614 nm under ambient light/ultraviolet excitation, which is associated with the typical ~3H_4 → ~1D_2 transition of Pr~(3+). The observed red emission is quite stable and long (~60 min) for a dark-adapted human eye and shows no appreciable degradation in the optical properties for prolonged exposure to surrounding/atmosphere. With the addition of nanosized silica powder, the photoluminescence was augmented nearly 1.6 times as that of unadded sample. The present results are entirely different from those reported previously for Pr~(3+) doped-(Ca,Zn)TiO_3 phosphor and silica-based persistent phosphors.
机译:提出了与由于纳米尺寸的二氧化硅粉末和钙,锌,钛和的氧化物混合物的高温合并引起的发光增强有关的结果。 (Ca,Zn)TiO_3:Pr〜(3+)荧光粉在环境光/紫外线激发下在〜614 nm处发射出窄带强光,这与Pr〜(3的典型〜3H_4→〜1D_2跃迁有关+)。对于适应深色的人眼,观察到的红色发射非常稳定且持续时间较长(约60分钟),对于长时间暴露于周围环境/大气,光学性能没有明显下降。通过添加纳米级二氧化硅粉末,其光致发光强度是未添加样品的1.6倍。目前的结果与先前报道的Pr〜(3+)掺杂的(Ca,Zn)TiO_3荧光粉和二氧化硅基持久性荧光粉完全不同。

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