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Averaged angle-resolved electroreflectance spectroscopy on Cu(ln,Ga)Se_2 solar cells: Determination of buffer bandgap energy and identification of secondary phase

机译:Cu(ln,Ga)Se_2太阳能电池的平均角分辨电反射光谱:缓冲带隙能量的测定和次级相的鉴定

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Currently, the use of Zn(O,S) as buffer material for Cu(In,Ga)Se2 (CIGS) solar cells is intensely studied in order to further boost the performance of these devices. In this context, nondestructive analytical tools are needed that enable the determination of buffer bandgap energies in the complete device. To this end, we developed a spectroscopic approach based on electroreflectance (ER). From a set of measured angle-resolved ER (ARER) spectra, an averaged modulus spectrum is numerically calculated. This method suppresses the commonly observed detrimental line-shape distortions due to interference effects in the layered device structure and thus enables the determination of bandgap energies even for thin buffer layers. To verify the working principle of ARER, we first apply it to CIGS absorber and CdS buffer layers. Then, we utilize it to investigate CIGS solar cells with Zn(O,S) buffers. All ARER results are compared to the results of diffuse ER, a technique previously developed for the suppression of interference fringes. We demonstrate that ARER is the superior ER method for nondestructive bandgap determination of thin buffer layers in complete CIGS solar cells. Moreover, a Cu containing compound was determined as a secondary phase in the Zn(O,S) buffer by combined ARER studies, scanning transmission electron microscopy, and energy-dispersive X-ray spectroscopy. Published under license by AIP Publishing.
机译:当前,为了进一步提高这些器件的性能,正在深入研究使用Zn(O,S)作为Cu(In,Ga)Se2(CIGS)太阳能电池的缓冲材料。在这种情况下,需要使用非破坏性分析工具来确定整个设备中的缓冲带隙能量。为此,我们开发了一种基于电反射(ER)的光谱方法。从一组测得的角分辨ER(ARER)光谱中,计算出平均模量光谱。该方法抑制了由于分层器件结构中的干扰效应而通常观察到的有害线形畸变,因此即使对于薄缓冲层也能够确定带隙能量。为了验证ARER的工作原理,我们首先将其应用于CIGS吸收层和CdS缓冲层。然后,我们利用它来研究具有Zn(O,S)缓冲液的CIGS太阳能电池。将所有ARER结果与漫反射ER的结果进行比较,漫反射ER是先前开发的用于抑制干涉条纹的技术。我们证明,ARER是用于完整CIGS太阳能电池中薄缓冲层的无损能隙确定的卓越ER方法。此外,通过结合ARER研究,扫描透射电子显微镜和能量色散X射线光谱法,确定了含铜化合物为Zn(O,S)缓冲液中的次要相。由AIP Publishing授权发布。

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