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Self-assembly and photoluminescence of molybdenum oxide nanoparticles

机译:氧化钼纳米粒子的自组装和光致发光

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We report on the synthesis of self-assembled hillock shaped MoO3 nanoparticles on thin films exhibiting intense photoluminescence (PL) by RF magnetron sputtering and subsequent oxidation. MoO3 nanocrystals of size ∼29 nm are self-assembled into uniform nanoparticles with diameter ∼174 nm. The mechanism of the intense PL behaviour from MoO3 nanoparticles is investigated and systematically discussed. The films exhibit two bands; a near-band-edge UV emission and a defect related deep level visible emission. The enhancement in PL intensity with annealing is not only by the improvement in crystallinity and grain size but also by the increase in the rms surface roughness and porosity of the films. The PL intensity is thermally activated with activation energy 1.07 and 0.87 eV respectively for the UV and visible emissions. The UV band exhibits a blue shift according to the band gap with increasing post-annealing temperatures, which suggests the possibility to tune the UV photoluminescence band by varying the oxidation temperature.
机译:我们报告了自组装的丘陵形状的MoO 3 纳米粒子在薄膜上的合成,这些薄膜通过RF磁控溅射和随后的氧化作用表现出强烈的光致发光(PL)。直径约29 nm的MoO 3 纳米晶体自组装成直径约174 nm的均匀纳米颗粒。研究并系统地讨论了MoO 3 纳米粒子强烈PL行为的机理。电影有两个乐队。近带边缘的紫外线发射和与缺陷相关的深层可见光发射。通过退火提高PL强度的原因不仅在于结晶度和晶粒尺寸的改善,还在于薄膜均方根表面粗糙度和孔隙率的提高。 PL强度分别以1.07和0.87 eV的激活能进行热激活,以产生紫外线和可见光。随着后退火温度的升高,UV带随带隙呈现蓝移,这表明可以通过改变氧化温度来调节UV光致发光带。

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