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采用 Ag 镜增强光捕获的柔性 CuS 纳米管-ITO 薄膜肖特基结太阳能电池。

Flexible CuS nanotubes-ITO film Schottky junction solar cells with enhanced light harvesting by using an Ag mirror.

机构信息

School of Electronic Science and Applied Physics, Hefei University of Technology, Hefei Anhui 230009, People's Republic of China.

出版信息

Nanotechnology. 2013 Feb 1;24(4):045402. doi: 10.1088/0957-4484/24/4/045402. Epub 2013 Jan 8.

Abstract

Here we report the fabrication of a novel photovoltaic device based on CuS nanotubes (CuSNTs) and indium tin oxide (ITO) Schottky junctions. Large-quantity synthesis of CuSNTs was accomplished via a solution-based sacrificial template method under moderate conditions, while ITO Schottky contacts were fabricated via micro-fabrication and pulsed laser deposition (PLD). Upon light illumination, CuSNTs-ITO Schottky junctions exhibited pronounced photovoltaic behavior, giving rise to a power conversion efficiency of 1.17% on a conventional SiO(2)/Si substrate. Furthermore, by utilizing PET as the substrate, transparent and flexible CuSNTs-ITO solar cells were constructed and showed performance close to their device counterparts on a rigid substrate. Notably, it was found that the flexible devices were robust against tensile strain and could stand a bending angle up to ∼95°. To enhance the light absorption of the devices, an Ag mirror layer was deposited on the rear side of the PET substrate so as to allow multiple reflection and absorption of the incident light. As a result, the flexible devices showed a substantial performance improvement, yielding an efficiency of ∼2%. Our results demonstrate that low-cost and environmentally friendly CuSNTs-ITO solar cells are promising candidates for new-generation photovoltaic devices.

摘要

在这里,我们报告了一种基于 CuS 纳米管 (CuSNTs) 和氧化铟锡 (ITO) 肖特基结的新型光伏器件的制造。通过在温和条件下使用基于溶液的牺牲模板法,大量合成了 CuSNTs,而 ITO 肖特基接触则通过微制造和脉冲激光沉积 (PLD) 来制备。在光照射下,CuSNTs-ITO 肖特基结表现出明显的光伏行为,在常规的 SiO2/Si 衬底上产生了 1.17%的功率转换效率。此外,通过使用 PET 作为衬底,构建了透明且灵活的 CuSNTs-ITO 太阳能电池,其性能与刚性衬底上的器件相当。值得注意的是,发现柔性器件对拉伸应变具有鲁棒性,并且可以承受高达 ∼95°的弯曲角度。为了增强器件的光吸收,在 PET 衬底的背面沉积了一层 Ag 反射镜层,以便允许入射光的多次反射和吸收。结果,柔性器件的性能得到了显著提高,效率约为 2%。我们的结果表明,低成本且环保的 CuSNTs-ITO 太阳能电池是新一代光伏器件的有前途的候选者。

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