首页> 外文OA文献 >Structural, morphological and luminescence properties of nanocrystalline up-converting Y₁ ₈₉Yb₀ ₁Er₀ ₀₁O₁ phosphor particles synthesized through aerosol route
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Structural, morphological and luminescence properties of nanocrystalline up-converting Y₁ ₈₉Yb₀ ₁Er₀ ₀₁O₁ phosphor particles synthesized through aerosol route

机译:通过气溶胶路线合成的纳米晶上转换Y1₈₉Yb0 1 Er 0 O 10 O 1荧光粉颗粒的结构,形态和发光性质

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摘要

Nanocrystalline up-converting Y₂ O₃Yb³⁺ Er³⁺ phosphor particles were processed in a dispersed system-aerosol, generated ultrasonically at 1.3 MHz from common nitrate precursor solution having fixed ytterbium-to-erbium concentration ratio. The appropriate process parameters: residence time 21 s, carrier gas (air) flow rate 1.6 dm3/min, synthesis temperature 900 °C, led to the formation of un-agglomerated spherical nanostructured secondary particles, having mean particle size of approx 450 nm, composed of primary nanoscaled (20 nm) subunits. In order to reach targeting phase crystallinity, the as-prepared particles were additionally annealed at 1100 °C in air for 12, 24 and 48 h, respectively. Particle structure, morphology and purity were analyzed by X-ray powder diffraction (XRPD), scanning electron microscopy (FESEM/SEM), analytical and high resolution transmission electron microscopy (TEM/HRTEM) in combination with energy dispersive X-ray analysis and Fourier Transform Infrared Spectroscopy (FTIR). All samples crystallized in a cubic bixbyte-structure, space group Ia-3. The crystallite size changed with annealing time from 30 nm in as-prepared sample to 135 nm in sample annealed for 48 h, respectively. Emission spectra were assigned to the following trivalent erbium f–f electronic transitions: ²H₉/₂ → ⁴I₁₅/₂ (blue: 407–420 nm), (²H₁₁/₂̦ ⁴S₃/₂) → ⁴I₁₅/₂ (green: 510–590 nm), and ⁴F₉/₂ → ⁴I₁₅/₂ (red: 640–720 nm). The significant improvement of the emission decay times were observed after thermal treatment and this effect is correlated further with the structural and morphological particles characteristics. For the anneal-ing time of 12 h a quite high emission decay times were achieved (blue: 0.14 ms, green: 0.32 ms and red: 0.39 ms).
机译:在分散的系统气溶胶中处理纳米晶上转换的Y 2 O 3 Yb 3 Er Er 3荧光粉颗粒,该颗粒由common与-浓度比固定的普通硝酸盐前体溶液在1.3 MHz超声产生。合适的工艺参数:停留时间21 s,载气(空气)流速1.6 dm3 / min,合成温度900°C,导致形成未团聚的球形纳米结构二级颗粒,平均粒径约为450 nm,由主要的纳米级(20 nm)亚基组成。为了达到目标相结晶度,将制备好的颗粒分别在1100°C的空气中退火12、24和48 h。通过X射线粉末衍射(XRPD),扫描电子显微镜(FESEM / SEM),分析和高分辨率透射电子显微镜(TEM / HRTEM)结合能量色散X射线分析和傅里叶分析了颗粒的结构,形态和纯度变换红外光谱(FTIR)。所有样品均以立方Bixbyte结构,空间群Ia-3结晶。晶粒尺寸随退火时间从制备的样品中的30 nm变为退火48小时的样品中的135 nm而变化。发射光谱分配给以下三价f–f电子跃迁:“H₉/ 2→⁴I₁₅/ 2(蓝色:407-420 nm),(”H₁₁/²⁴S₃/ 2)→⁴I₁₅/ 2(绿色:510-590 nm) )和⁴F₉/ 2→⁴I₁₅/ 2(红色:640–720 nm)。热处理后观察到发射衰减时间的显着改善,并且该效应与结构和形态颗粒的特性进一步相关。对于12 h的退火时间,可以获得很高的发射衰减时间(蓝色:0.14 ms,绿色:0.32 ms,红色:0.39 ms)。

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