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[硫化锌/硫化镉复合窗口层对碲化镉太阳能电池短波长量子效率的影响]

[The impact of ZnS/CdS composite window layer on the quantun efficiency of CdTe solar cell in short wavelength].

作者信息

Zhang Li-xiang, Feng Liang-huan, Wang Wen-wu, Xu Hang, Wu Li-li, Zhang Jing-quan, Li Wei, Zeng Guang-gen

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Feb;35(2):320-4.

Abstract

ZnS/CdS composite window layer was prepared by magnetron sputtering method and then applied to CdTe solar cell. The morphology and structure of films were measured. The data of I-V in light and the quantum efficiency of CdTe solar cells with different window layers were also measured. The effect of ZnS films prepared in different conditions on the performance of CdTe solar cells was researched. The effects of both CdS thickness and ZnS/CdS composite layer on the transmission in short wavelength were studied. Particularly, the quantum efficiency of CdTe solar cells with ZnS/CdS window layer was measured. The results show as follows. With the thickness of CdS window layer reducing from 100 to 50 nm, the transmission increase 18.3% averagely in short wavelength and the quantum efficiency of CdTe solar cells increase 27.6% averagely. The grain size of ZnS prepared in 250 degrees C is smaller than prepared at room temperature. The performance of CdTe solar cells with ZnS/CdS window layer is much better if ZnS deposited at 250 degrees C. This indicates grain size has some effect on the electron transportation. When the CdS holds the same thickness, the transmission of ZnS/CdS window layer was improved about 2% in short wavelength compared with CdS window layer. The quantum efficiency of CdTe solar cells with ZnS/CdS window layer was also improved about 2% in short wavelength compared with that based on CdS window layer. These indicate ZnS/CdS composite window layer can increase the photon transmission in short wavelength so that more photons can be absorbed by the absorbent layer of CdTe solar cells.

摘要

采用磁控溅射法制备了ZnS/CdS复合窗口层,并将其应用于CdTe太阳能电池。测量了薄膜的形貌和结构。还测量了不同窗口层的CdTe太阳能电池在光照下的I-V数据和量子效率。研究了不同条件下制备的ZnS薄膜对CdTe太阳能电池性能的影响。研究了CdS厚度和ZnS/CdS复合层对短波长透射率的影响。特别地,测量了具有ZnS/CdS窗口层的CdTe太阳能电池的量子效率。结果如下。随着CdS窗口层厚度从100nm减小到50nm,短波长下的透射率平均提高18.3%,CdTe太阳能电池的量子效率平均提高27.6%。在250℃制备的ZnS的晶粒尺寸小于室温下制备的。如果在250℃沉积ZnS,具有ZnS/CdS窗口层的CdTe太阳能电池的性能要好得多。这表明晶粒尺寸对电子传输有一定影响。当CdS厚度相同时,与CdS窗口层相比,ZnS/CdS窗口层在短波长下的透射率提高了约2%。与基于CdS窗口层的CdTe太阳能电池相比,具有ZnS/CdS窗口层的CdTe太阳能电池在短波长下的量子效率也提高了约2%。这些表明ZnS/CdS复合窗口层可以增加短波长下的光子透射率,从而使更多的光子能够被CdTe太阳能电池的吸收层吸收。

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