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Optimization of Mo/Cr bilayer back contacts for thin-film solar cells

机译:薄膜太阳能电池Mo / Cr双层背面接触的优化

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摘要

Molybdenum (Mo) is the most commonly used material as back contact in thin-film solar cells. Adhesion of Mo film to soda–lime glass (SLG) substrate is crucial to the performance of solar cells. In this study, an optimized bilayer structure made of a thin layer of Mo on an ultra-thin chromium (Cr) adhesion layer is used as the back contact for a copper zinc tin sulfide (CZTS) thin-film solar cell on a SLG substrate. DC magnetron sputtering is used for deposition of Mo and Cr films. The conductivity of Mo/Cr bilayer films, their microstructure and surface morphology are studied at different deposition powers and working pressures. Good adhesion to the SLG substrate has been achieved by means of an ultra-thin Cr layer under the Mo layer. By optimizing the deposition conditions we achieved low surface roughness, high optical reflectance and low sheet resistivity while we could decrease the back contact thickness to 600 nm. That is two thirds to half of the thickness that is currently being used for bilayer and single layer back contact for thin-film solar cells. We demonstrate the excellent properties of Mo/Cr bilayer as back contact of a CZTS solar cell.
机译:钼(Mo)是薄膜太阳能电池中最常用的背接触材料。钼膜对钠钙玻璃(SLG)基底的粘附对于太阳能电池的性能至关重要。在这项研究中,由超薄铬(Cr)粘附层上的Mo薄层构成的优化双层结构用作SLG基板上的铜锌硫化锡(CZTS)薄膜太阳能电池的背接触。直流磁控溅射用于沉积Mo和Cr膜。研究了不同沉积功率和工作压力下Mo / Cr双层薄膜的电导率,微观结构和表面形貌。通过在Mo层下面的超薄Cr层,可以实现对SLG基板的良好粘合。通过优化沉积条件,我们获得了较低的表面粗糙度,较高的光反射率和较低的薄层电阻率,同时可以将背接触厚度减小至600 nm。这是目前用于薄膜太阳能电池的双层和单层背接触的厚度的三分之二至一半。我们证明了Mo / Cr双层作为CZTS太阳能电池的背触点的优异性能。

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