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首页> 外文期刊>Optical Materials >Optical, electrical and structural properties of nano-pyramidal ZnO films grown on glass substrate by spray pyrolysis technique
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Optical, electrical and structural properties of nano-pyramidal ZnO films grown on glass substrate by spray pyrolysis technique

机译:喷雾热解技术在玻璃基板上生长的纳米金字塔形ZnO薄膜的光学,电学和结构性质

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摘要

Optical, electrical and structural properties of ZnO nano-pyramidal films, synthesized by chemical spray pyrolysis technique on glass substrates were investigated. A complete set of structural, optical and electrical parameters is proposed in this contribution. ZnO films possess polycrystalline wurtzite structure showing a preferential orientation along the c-axis as confirmed by XRD measurements. The structure has been investigated by using Raman spectroscopy, at 532 nm excitation source and the morphology is characterized by scanning electron microscopy (SEM). Link to the specific growing parameters, the morphology of the so-obtained films is rarely observed in nanostructures family with a diameter of ZnO hexagonal nano-pyramids in the range of 50-150 nm smaller than this usually obtained by spray pyrolysis. The strong peaks of the E_2 Raman mode at 99.3 cm~(-1) (low) and 439.4 cm~(-1) (high), indicate a good crystal quality of the ZnO nano-pyramids. The existence of a compressive stress in the ZnO structure was pointed out by Raman scattering and estimated by XRD measurements. High optical transmittance value of the film above 90% in the visible region was observed and the optical band gap was found to be 3.273 eV at room temperature. The photoluminescence (PL) spectrum of ZnO hexagonal pyramid shows an intensity ratio of the UV emission to the visible band more than 20. By electrical characterizations of the ZnO films, we obtained the values of the resistivity and Hall mobility equal to 17Ωcm and 8.49 cm~2 V~(-1) s~(-1), respectively.
机译:研究了通过化学喷雾热解技术在玻璃基板上合成的ZnO纳米金字塔形薄膜的光学,电学和结构性能。在此文稿中提出了完整的结构,光学和电气参数集。 ZnO薄膜具有多晶纤锌矿结构,通过X射线衍射测量证实其沿c轴显示优先取向。已经通过使用拉曼光谱在532nm激发源处研究了该结构,并且通过扫描电子显微镜(SEM)表征了形态。链接到特定的生长参数,这样获得的膜的形态在纳米结构族中很少观察到,其直径小于通常通过喷雾热解获得的ZnO六角形纳米金字塔直径50-150 nm的范围。 E_2拉曼模式的强峰分别在99.3 cm〜(-1)(低)和439.4 cm〜(-1)(高),表明ZnO纳米金字塔的晶体质量良好。通过拉曼散射指出了ZnO结构中存在压应力,并通过XRD测量对其进行了估计。在可见区域中观察到膜的高透光率值高于90%,并且在室温下发现光学带隙为3.273eV。 ZnO六棱锥的光致发光(PL)光谱显示UV发射与可见带的强度比大于20。通过ZnO膜的电学表征,我们获得的电阻率和霍尔迁移率值分别为17Ωcm和8.49 cm 〜2 V〜(-1)s〜(-1)。

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