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A SIMPLE METHOD TO MAKE NON-ETCHING BACK CONTACT FOR CDTE SOLAR CELLS WITHOUT USING COPPER

机译:一种简单的方法,可以在不使用铜的情况下为CDTE太阳能电池进行不蚀刻返回接触

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The classical CdTe solar cell back contact formation procedure generally requires CdTe surface treatment such as chemical etching or CdTe surface doping using Cu compounds before depositing metal back contact to overcome Schottky barrier formation. In this manuscript, we present a simple procedure which can help to produce a back contact without etching and using copper. After the CdCl_2 activation process, methanolic SbCl_3 solution was applied onto the CdTe surface and subsequently heat treated for very short time. The X-ray photo electron spectroscopy measurements indicate the formation of a thin Sb_2Te_3 interlayer on the CdTe. The SbCl_3 based back contact yields solar cell performance comparable to the reference cell prepared with nitric-phosphoric acid etching procedure. In general, the SbCl_3 based solar cells show strong roll-over phenomena. In addition to the Sb_2Te_3 interlayer formation, the formation of complex native oxides might limit the free carrier concentration in the interlayer and might be responsible for the roll-over phenomena. Improved SbCl_3 solution application on CdTe surface and optimized thermal treatment can probably yield higher efficiency solar cells than the reference cell.
机译:经典CDTE太阳能电池背部接触形成过程通常需要使用Cu化合物在沉积金属背部接触之前使用C型蚀刻或CdTe表面掺杂的CdTe表面处理,以克服肖特基势垒形成。在此稿件中,我们提出了一种简单的程序,可以帮助在不蚀刻和使用铜的情况下产生背面接触。在CDCl_2活化过程之后,将甲醇SBCl_3溶液施加到CDTE表面上,随后在很短的时间内进行热处理。 X射线照片电子光谱测量结果表明CDTE上的薄SB_2TE_3中间层的形成。基于SBCL_3的后接触产生与用硝基磷酸蚀刻程序制备的参考电池相当的太阳能电池性能。通常,基于SBCL_3的太阳能电池显示出强烈的翻转现象。除了SB_2TE_3中间层形成之外,复杂天然氧化物的形成可能会限制中间层中的游离载流子浓度,并且可能对翻转现象负责。改进的SBCL_3解决方案在CDTE表面上的应用和优化的热处理可以产生比参考电池更高的效率太阳能电池。

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