纳米棒
材料科学
堆积
硒化物
光电子学
光伏系统
能量转换效率
吸收(声学)
锑
纳米技术
硒
太阳能电池
化学
冶金
有机化学
复合材料
生物
生态学
作者
Zhiqiang Li,Xiaoyang Liang,Gang Li,Haixu Liu,Huiyu Zhang,Jianxin Guo,Jingwei Chen,Kai Shen,Xingyuan San,Wei Yu,R.E.I. Schropp,Yaohua Mai
标识
DOI:10.1038/s41467-018-07903-6
摘要
Antimony selenide (Sb2Se3) has a one-dimensional (1D) crystal structure comprising of covalently bonded (Sb4Se6)n ribbons stacking together through van der Waals force. This special structure results in anisotropic optical and electrical properties. Currently, the photovoltaic device performance is dominated by the grain orientation in the Sb2Se3 thin film absorbers. Effective approaches to enhance the carrier collection and overall power-conversion efficiency are urgently required. Here, we report the construction of Sb2Se3 solar cells with high-quality Sb2Se3 nanorod arrays absorber along the [001] direction, which is beneficial for sun-light absorption and charge carrier extraction. An efficiency of 9.2%, which is the highest value reported so far for this type of solar cells, is achieved by junction interface engineering. Our cell design provides an approach to further improve the efficiency of Sb2Se3-based solar cells.
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