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The oxidation effect of a Mo back contact on Cu(In,Ga)(Se,S)(2) thin-film solar modules

机译:Mo背接触对Cu(In,Ga)(Se,S)(2)薄膜太阳能电池组件的氧化作用

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摘要

We investigated the surface properties of a Mo back contact for large-area thin-film solar modules with high efficiency and good adhesion between Mo and the absorber layer. It was determined that the appropriate surface properties of Mo would improve the efficiency from 10% to above 15.0 +/- 0.21% and narrow the efficiency distribution in large-area modules. The Mo back contact was annealed at various temperatures between room temperature and 230 degrees C in air to control the amount of sodium diffusing from the soda-lime glass substrate during selenization and sulffirization, and to improve the uniformity of the unit cell. Before the heat treatment, the amount of sodium in the patterned area of the unit cell was more than 10 times of that in the central area of the cell. The patterned region with higher Na content had smaller grains than those in the central area with less Na, resulting in many peel-offs and shunting paths. The difference in sodium content was reduced after heat treatment. The optimized surface oxide of the Mo back contact had a thickness of around 3-5 nm and consisted of the MoO3 phase. The grain boundary of Mo columnar structure near the surface consisted of the oxide layer. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们研究了用于大面积薄膜太阳能电池组件的Mo背接触的表面特性,该表面具有很高的效率,并且Mo与吸收层之间具有良好的附着力。已确定适当的Mo表面性能将使效率从10%提高到15.0 +/- 0.21%以上,并缩小大面积模块中的效率分布。在空气中,在室温和230摄氏度之间的各种温度下对Mo背接触件进行退火,以控制硒化和硫化过程中钠从钠钙玻璃基板中扩散的量,并改善单位电池的均匀性。在热处理之前,单位晶胞的图案化区域中的钠含量是其中心区域的钠含量的10倍以上。具有较高Na含量的图案化区域具有比具有较少Na含量的中央区域的晶粒较小的晶粒,从而导致许多剥离和分流路径。热处理后钠含量差异减小。 Mo背触点的优化表面氧化物的厚度约为3-5 nm,由MoO3相组成。表面附近的Mo柱状组织的晶界由氧化物层构成。 (C)2015 Elsevier B.V.保留所有权利。

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