首页> 外文会议>Photovoltaic Specialists Conference (PVSC), 2011 37th IEEE >Optical and passivating properties of sol-gel derived silica and titania coatings on textured monocrystalline silicon
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Optical and passivating properties of sol-gel derived silica and titania coatings on textured monocrystalline silicon

机译:溶胶-凝胶法制得的单晶硅上的二氧化硅和二氧化钛涂层的光学和钝化性能

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In standard solar cell fabrication, silicon nitride is applied to the front surface by plasma enhanced chemical vapor deposition. The layer serves as an antireflective coating and provides passivation, but is costly to produce. An interesting alternative of making thin films is the sol-gel technique. The process is simple, cheap and low-temperature. In the present study, silica and titania sol-gel coatings were applied to textured and polished monocrystalline silicon wafers and subsequently annealed in a furnace. On polished wafers, the solar averaged reflectance was decreased from 0.37 to 0.11 with a titania layer and to 0.25 with a silica layer. The deviation in reflectance did not translate onto textured wafers. The reflectances of these wafers were decreased from about 0.13 to about 0.08 independently of coating type. The layers were not found to passivate the surface. The layers are promising in terms of reflectance, but to improve passivation properties new approaches are necessary.
机译:在标准的太阳能电池制造中,通过等离子增强化学气相沉积将氮化硅施加到前表面。该层用作抗反射涂层并提供钝化作用,但是生产成本高。制作薄膜的一个有趣的替代方法是溶胶-凝胶技术。该方法简单,便宜且低温。在本研究中,将二氧化硅和二氧化钛溶胶-凝胶涂层应用于纹理化和抛光的单晶硅晶片,然后在熔炉中退火。在抛光的晶片上,日光平均反射率从氧化钛层的0.37降低到0.11,而从二氧化硅层降低到0.25。反射率的偏差没有转化到纹理化的晶片上。这些晶片的反射率从大约0.13降低到大约0.08,与涂层类型无关。没有发现这些层使表面钝化。这些层在反射率方面是有前途的,但是为了提高钝化性能,需要新的方法。

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