材料科学
碳纳米管
光电流
氧化物
光伏系统
异质结
纳米技术
纳米管
掺杂剂
金属
太阳能电池
碳纤维
能量转换效率
聚合物太阳能电池
光电子学
兴奋剂
复合材料
复合数
生态学
冶金
生物
作者
Feijiu Wang,Daichi Kozawa,Yuhei Miyauchi,Kazushi Hiraoka,Shinichiro Mouri,Yutaka Ohno,Kazunari Matsuda
摘要
Carbon nanotube-based solar cells have been extensively studied from the perspective of potential application. Here we demonstrated a significant improvement of the carbon nanotube solar cells by the use of metal oxide layers for efficient carrier transport. The metal oxides also serve as an antireflection layer and an efficient carrier dopant, leading to a reduction in the loss of the incident solar light and an increase in the photocurrent, respectively. As a consequence, the photovoltaic performance of both p-single-walled carbon nanotube (SWNT)/n-Si and n-SWNT/p-Si heterojunction solar cells using MoOx and ZnO layers is improved, resulting in very high photovoltaic conversion efficiencies of 17.0 and 4.0%, respectively. These findings regarding the use of metal oxides as multifunctional layers suggest that metal oxide layers could improve the performance of various electronic devices based on carbon nanotubes. The interface between electrodes and active layers of electronic devices such as solar cells is crucial for the device performance. Here, the authors show that metal oxides MoOxand ZnO play an important role in reducing the electronic barrier at the interface in photovoltaic devices based on carbon nanotubes.
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