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Influence of precursor concentration on physical properties of CdO thin films prepared by spray pyrolysis technique using nebulizer

机译:前驱体浓度对使用喷雾器喷雾热解技术制备的CdO薄膜物理性能的影响

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摘要

Cadmium oxide (CdO) thin films were prepared with different concentrations of precursor solution (0.05,0.1, 0.15,0.2 and 0.25 M, respectively) at the optimized temperature (200 ℃) using the nebulized spray pyrolysis technique to obtain better crystallinity in polycrystalline thin films on amorphous glass substrates. The XRD characterization of those samples revealed a preferential orientation along the (111) plane having a cubic structure. The scanning electron microscopy (SEM) analysis displayed that all the as-deposited thin films have spherical shaped grains. The transmit-tance of the as-deposited CdO thin films had decreased from 88 to 71% for longer wavelength regions (600-900 ran) as the precursor concentration had increased and then increased for higher precursor concentration. The optical band gap was found to lie between 2.45 and 2.40 eV belonging to direct transition for those thin films. The presence of Cd-O bond (540 cm~(-1)) was confirmed by FTIR spectrum. The emission properties of CdO thin films were studied by luminescence spectrum recorded at room temperature. A maximum carrier concentration and minimum resistivity values of 4.743×10~(19) cm~(-3) and 1.06×10~(-3) Ω-cm, respectively, were obtained for 0.2 M precursor concentration. These CdO thin films have high optical transmittance and high room temperature conductivity, which can be used as the TCO and Solar cell (window layer) material.
机译:采用雾化喷雾热解技术,在最佳温度(200℃)下,以不同浓度的前驱体溶液(分别为0.05、0.1、0.15、0.2和0.25 M)制备氧化镉(CdO)薄膜,以获得更好的结晶度非晶玻璃基板上的薄膜。这些样品的XRD表征揭示了沿具有立方结构的(111)平面的优先取向。扫描电子显微镜(SEM)分析显示,所有沉积的薄膜均具有球形晶粒。随着前驱体浓度的增加,沉积的CdO薄膜的透射率对于更长的波长区域(600-900纳米)从88%降低到71%,然后随着更高的前驱体浓度而增加。发现光学带隙在2.45和2.40eV之间,属于那些薄膜的直接跃迁。 FTIR光谱证实了Cd-O键(540 cm〜(-1))的存在。通过在室温下记录的发光光谱研究了CdO薄膜的发射特性。对于0.2 M的前驱体浓度,获得的最大载流子浓度和最小电阻率值分别为4.743×10〜(19)cm〜(-3)和1.06×10〜(-3)Ω-cm。这些CdO薄膜具有较高的透光率和较高的室温电导率,可用作TCO和太阳能电池(窗层)材料。

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  • 来源
    《Applied Physics》 |2017年第12期|764.1-764.15|共15页
  • 作者

    M. Anitha; L. Amalraj; N. Anitha;

  • 作者单位

    Department of Physics, Virudhunagar Hindu Nadar's Senthikumara Nadar College (Autonomous), Virudhunagar, Tamilnadu 626001, India;

    Department of Physics, Virudhunagar Hindu Nadar's Senthikumara Nadar College (Autonomous), Virudhunagar, Tamilnadu 626001, India;

    Department of Physics, Virudhunagar Hindu Nadar's Senthikumara Nadar College (Autonomous), Virudhunagar, Tamilnadu 626001, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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