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Preparation of anatase TiO2 thin film by low temperature annealing as an electron transport layer in inverted polymer solar cells

机译:低温退火制备倒置聚合物太阳能电池中电子传输层的锐钛矿型TiO2薄膜

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To prepare the anatase TiO2 thin films on ITO glass, amorphous TiO2 colloidal solution was synthesized through the simple sol-gel method by using titanium (IV) isopropoxide as a precursor. This amorphous TiO2 colloidal solution was spread on ITO glass by spin-coating, then treated at 450 degrees C to obtain anatase TiO2 film (for device A). For other TiO2 films, amorphous TiO2 colloidal solution was treated through solvothermal process at 180 degrees C to obtain anatase TiO2 colloidal solution. This anatase TiO2 colloidal solution was spread on ITO glass by spin coating, and then annealed at 200 degrees C (for device B) and 130 degrees C (for device C), respectively. The average particle size of amorphous TiO2 colloidal solution was about 1.0 nm and that of anatase TiO2 colloidal solution was 10 nm. The thickness of TiO2 films was about 15 nm for all cases. When inverted polymer solar cells were fabricated by using these TiO2 films as an electron transport layer, the device C showed the highest PCE (2.6%) due to the lack of defect, uniformness and high light absorbance of TiO2 films. The result of this study can be applied for the preparation of inverted polymer solar cell using TiO2 films as a buffer layer at low temperature on plastic substrate by roll-to roll process. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了在ITO玻璃上制备锐钛矿型TiO2薄膜,以异丙醇钛(IV)为前驱体,通过简单的溶胶-凝胶法合成了非晶态的TiO2胶体溶液。通过旋涂将该无定形的TiO 2胶体溶液散布在ITO玻璃上,然后在450℃下处理以获得锐钛矿型TiO 2膜(用于装置A)。对于其他TiO2薄膜,通过溶剂热法在180℃下处理无定形TiO2胶体溶液,得到锐钛矿型TiO2胶体溶液。通过旋涂将该锐钛矿型TiO 2胶体溶液散布在ITO玻璃上,然后分别在200℃(对于装置B)和130℃(对于装置C)下退火。非晶态TiO 2胶体溶液的平均粒径为约1.0nm,而锐钛矿型TiO 2胶体溶液的平均粒径为10nm。在所有情况下,TiO2薄膜的厚度约为15 nm。当通过使用这些TiO2膜作为电子传输层来制造倒置聚合物太阳能电池时,由于缺少TiO2膜的缺陷,均匀性和高吸光度,因此器件C的PCE最高(2.6%)。本研究的结果可应用于在塑料基板上通过滚涂工艺在低温下以TiO2薄膜为缓冲层的倒置聚合物太阳能电池的制备。 (C)2015 Elsevier B.V.保留所有权利。

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