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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >High temperature annealing of sprayed SnO2: F layers in a silicon solar cell process with screen-printed contacts
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High temperature annealing of sprayed SnO2: F layers in a silicon solar cell process with screen-printed contacts

机译:带有丝网印刷触点的硅太阳能电池工艺中喷涂SnO2:F层的高温退火

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摘要

In order to improve the solar cell conversion efficiency, a thin film of doped tin oxide (SnO2: F) has been deposited by the spray-pyrolysis technique on a monocrystalline diffused silicon wafer. Subsequently, the layer must undergo the firing step of screen-printed contacts with temperatures up to 830 degrees C. After annealing, one notices with the naked eye the appearance of speckles disturbing the uniformity of the as-deposited blue-coloured SnO2:F. Characterizations such as XPS. FTIR, RBS, XRD, SEM, Hall Effect, four point probe... etc, are all consistent to reveal a net increase of the SnO2:F layer resistivity which leads to efficiency degradation. Annealing the thin films under CO and 90% N-2-10% H-2 atmospheres was investigated to seek possibilities to preserve the expected improvements. Unlike forming gas, CO reducing ambient was found to be very effective for the high temperature contact firing with no thin film conductivity deterioration. (c) 2005 Elsevier B.V. All rights reserved.
机译:为了提高太阳能电池的转换效率,已通过喷雾热解技术在单晶扩散硅晶片上沉积了掺杂的氧化锡(SnO2:F)薄膜。随后,该层必须经过温度高达830摄氏度的丝网印刷触点的焙烧步骤。退火后,用肉眼注意到斑点的出现会干扰所沉积的蓝色SnO2:F的均匀性。 XPS等特征。 FTIR,RBS,XRD,SEM,霍尔效应,四点探针等均一致,显示出SnO2:F层电阻率的净增加,导致效率下降。研究了在CO和90%N-2-10%H-2气氛下对薄膜进行退火处理,以寻求保留预期改进的可能性。与形成气体不同,发现减少CO的环境对于高温接触烧结非常有效,而薄膜电导率没有降低。 (c)2005 Elsevier B.V.保留所有权利。

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