材料科学
异质结
光电子学
太阳能电池
硅
基质(水族馆)
透射率
图层(电子)
透明导电膜
沉积(地质)
薄膜
能量转换效率
纳米技术
古生物学
海洋学
沉积物
生物
地质学
作者
Zhongxin Zhou,Yunlong Zhang,Xinliang Chen,Shengzhe Li,Ying Zhao,Xiaodan Zhang
标识
DOI:10.1021/acsaem.9b02064
摘要
In this work, wide-spectrum Mg and Ga-codoped ZnO (MGZO) transparent conductive films are developed via a reactive plasma deposition (RPD) technique with a soft thin-film growth process. MGZO film with a work function of ∼4.36 eV can be achieved within 12 min without any intentional substrate-heating treatment. The 480 nm-thickness MGZO film exhibits a low resistivity of ∼9.9 × 10–4 Ω cm and a high transmittance of ∼82.6% in the UV–vis–NIR region (λ approximately 400 nm–1200 nm). XRD spectra show that MGZO films exhibit (103) preferred orientation as the film thickness increases. A silicon heterojunction (SHJ) solar cell based on 480 nm-thick MGZO at the front side is completed. Excellent continuity of the MGZO film is proven by the cross-sectional SEM images, and there are no cracks and pinholes on the top or bottom of the c-Si pyramids. Further efficiency improvements are achieved using an ultrathin SnOx buffer layer with an ameliorated p-a-Si:H/TCO interface. Also, a silicon heterojunction (SHJ) solar cell using MGZO films on both sides is achieved with a conversion efficiency of 19.02%. These experimental results demonstrate that low-cost RPD-grown MGZO TCO materials could be commercially appropriate replacements for the conventional In2O3-based materials commonly used in SHJ solar cells and other optoelectronic devices.
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