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首页> 外文期刊>Solar Energy >Compact nanostructured TiO2 deposited by aerosol spray pyrolysis for the hole-blocking layer in a CH3NH3PbI3 perovskite solar cell
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Compact nanostructured TiO2 deposited by aerosol spray pyrolysis for the hole-blocking layer in a CH3NH3PbI3 perovskite solar cell

机译:CH3NH3PbI3钙钛矿太阳能电池中气孔喷雾热解沉积的致密纳米结构TiO2

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摘要

Layers of crystalline TiO2 were prepared using aerosol spray pyrolysis at different deposition temperatures and times. The effects of the deposition parameters on the structural, morphological and optical properties were investigated. The extent of the crystallinity and surface morphology of TiO2 depended very much on the growth temperatures. At a gas flow rate of 51/min, an inhomogeneous morphology with a cauliflower-like feature was observed for the films sprayed at 375 degrees C whereas they became denser and homogenous with the quality of both crystallization and diameters becoming better when the sprayed temperature was being increased up to 450 degrees C. The optical band gap of the TiO2 films was found to decrease from 3.66 to 3.61 eV as the film thicknesses was increased from 80 to 450 nm. The refractive index for electromagnetic waves having wavelengths between 450 and 800 nm varied between 2.0 and 2.12 for the films with thickness of 250-360 nm. There was a significant decrease to 1.93 when the thickness of the films was 450 nm. A layer of the sprayed-on TiO2 was then used as the hole-blocking layer in an organic-inorganic CH3NH3PbI3 perovskite based solar cell. A state-of-the-art transmission electron microscopy (TEM) technique for sample preparation was carried out using a dual focused ion beam (FIB) to investigate vertical morphology of the devices. It was found that the devices having the optimized thickness of the sprayed-on TiO2 displayed the power conversion efficiency (PCE) of 6.24%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用气溶胶喷雾热解法在不同的沉积温度和时间下制备了结晶性TiO2层。研究了沉积参数对结构,形态和光学性质的影响。 TiO2的结晶度和表面形态很大程度上取决于生长温度。在气体流速为51 / min的条件下,在375℃下喷涂的薄膜观察到具有花椰菜状特征的不均匀形态,而当喷涂温度为280℃时,它们变得更致密均匀,结晶质量和直径均变好。被增加到450℃。随着膜厚度从80nm增加到450nm,发现TiO 2膜的光学带隙从3.66eV减小到3.61eV。对于厚度为250-360nm的膜,波长在450-800nm之间的电磁波的折射率在2.0-2.12之间变化。当膜的厚度为450nm时,显着降低至1.93。然后将喷涂的TiO2层用作有机无机CH3NH3PbI3钙钛矿基太阳能电池中的空穴阻挡层。使用双聚焦离子束(FIB)进行了样品制备的最新透射电子显微镜(TEM)技术,以研究设备的垂直形态。发现具有最佳喷涂厚度的TiO2的器件显示出6.24%的功率转换效率(PCE)。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2016年第10期|515-524|共10页
  • 作者单位

    Kasetsart Univ, Dept Mat Sci, Fac Sci, Bangkok 10900, Thailand;

    Kasetsart Univ, Dept Mat Sci, Fac Sci, Bangkok 10900, Thailand;

    Kasetsart Univ, Dept Mat Sci, Fac Sci, Bangkok 10900, Thailand;

    Univ Delaware, Dept Mat Sci & Engn, Newark, DE 19716 USA;

    King Mongkuts Univ Technol Thonburi, Dept Phys, Fac Sci, Bangkok 10140, Thailand|King Mongkuts Univ Technol Thonburi, Theoret & Computat Sci Ctr TaCS, Fac Sci, Bangkok 10140, Thailand;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanostructured TiO2; Optical properties; Chemical spray nebulization; Cross-sectional TEM image;

    机译:纳米TiO2;光学性能;化学喷雾雾化;截面TEM图像;

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