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Structural, Thermal and Luminescence Study of Ceria Nanocrystals Dispersed in Silica Matrix

机译:分散在二氧化硅基质中分散的结构,热和发光研究

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Ceria (CeO2) nanocrystals dispersed in silica were prepared by sol-gel, a very suitable method for large-scale production. The formation of cubic fluorite structure of CeO2 nanocrystals was confirmed by XRD, TG-DTA and TEM. The average nanocrystalline size has been calculated similar to 3-5 nm using Debye-Scherrer formula for different annealed samples. The calculated nanocrystalline sizes were compared with W-H plot and TEM histograms. Different structural parameters like microstrain, lattice constant, dislocation density, X-ray density and activation energy were also calculated for all prepared samples. We have examined the photoluminescence (PL) due to defect centers and Ce3+ ions present in prepared nanopowder which were excited at two different wavelengths. PL study revealed the effect of annealing on the emission spectra and resulted that the emission efficiency of direct excitation at lambda(ex) = 325 nm was enhanced with respect to the indirect lambda(ex) = 250 nm. The emission produced from CeO(2)nanocrystals dispersed in amorphous silica matrix has been influenced by many factors such as the modification of the ligand field around the Ce3+ ions in silica, presence of hydroxyl ions and annealing temperature also. Detailed Energy transfer mechanism has been explained with all possible transition lines.
机译:分散在二氧化硅中的二氧化铈(CEO2)纳米晶体由溶胶 - 凝胶制备,是一种非常合适的大规模生产方法。通过XRD,Tg-DTA和TEM证实了CeO2纳米晶体立方氟岩结构的形成。使用Debye-Scherrer公式的平均纳米晶体尺寸的计算方法类似于3-5nm,用于不同的退火样品。将计算出的纳米晶体尺寸与W-H绘图和TEM直方图进行比较。对于所有制备的样品,还计算了不同的结构参数,如微陶器,晶格常数,位错密度,X射线密度和活化能量。我们已经检查了由于在两个不同波长的制备的纳米滤芯中存在的缺陷中心和CE3 +离子引起的光致发光(PL)。 PL研究揭示了退火对发射光谱的影响,并导致λ(ex)= 325nm的直接激发的发射效率得到了相对于间接λ(ex)= 250nm。由分散在无定形二氧化硅基质中的CeO(2)纳米晶体产生的排放受到许多因素的影响,例如二氧化硅中Ce3 +离子周围的配体场的改性,羟基离子的存在和退火温度也是如此。已经通过所有可能的过渡线解释了详细的能量转移机制。

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