首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Flexible polymer/copper indium sulfide hybrid solar cells and modules based on the metal xanthate route and low temperature annealing
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Flexible polymer/copper indium sulfide hybrid solar cells and modules based on the metal xanthate route and low temperature annealing

机译:基于金属黄药路线和低温退火的柔性聚合物/铜铟硫杂化太阳能电池和组件

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摘要

Organic/inorganic hybrid solar cells are an interesting type of polymer based solar cells, which combine beneficial properties of inorganic semiconductors with them of polymer based materials, in particular, the easy processability on flexible plastic substrates. Herein, we present a method to prepare polymer/copper indium sulfide hybrid solar cells on flexible PET substrates via the metal xanthate route for the in situ preparation of ligand-free inorganic nanocrystals directly in the conjugated polymer matrix. The issue that the temperatures needed for the formation of the inorganic nanoparticles were too high to apply this preparation route on flexible substrates, was solved in this study by adding n-hexylamine to the precursor solution which facilitates the formation of higher crystalline nanoparticles at lower temperatures. n-Hexylamine thereby reacts with the xanthate forming the corresponding O-2,2-dimethylpentan-3-yl-N-hexylthiocarbamate. Following this modified route, flexible hybrid solar cells with power conversion efficiencies of 1.6% could be realized using temperatures not higher than 140 °C in the whole fabrication process. Furthermore, we demonstrate that the metal xanthate route is also well suited for the fabrication of larger area solar cells and present hybrid solar cell modules on glass as well as on flexible PET substrates. In addition, the lifetime of the prepared solar cells was investigated. The devices prepared at low temperature exhibited significantly improved stability compared to devices fabricated at 195 °C.
机译:有机/无机混合太阳能电池是一种有趣的基于聚合物的太阳能电池,它结合了无机半导体的有益特性和基于聚合物的材料,尤其是在柔性塑料基板上的易加工性。在这里,我们提出了一种通过金属黄药途径在柔性PET基板上制备聚合物/铜铟杂化杂化太阳能电池的方法,用于直接在共轭聚合物基质中原位制备无配体的无机纳米晶体。在这项研究中,通过向前体溶液中添加正己胺来解决了无机纳米颗粒形成所需的温度太高而无法将这种制备方法应用于柔性基材的问题,该问题有助于在较低温度下形成更高结晶度的纳米颗粒。因此,正己胺与黄原酸酯反应形成相应的O-2,2-二甲基戊基-3-基-N-己基硫代氨基甲酸酯。按照这种改进的方法,在整个制造过程中,使用不高于140°C的温度,可以实现功率转换效率为1.6%的柔性混合太阳能电池。此外,我们证明了金属黄药路线也非常适合于大面积太阳能电池的制造,并且目前在玻璃以及柔性PET基板上的混合型太阳能电池模块。另外,研究了制备的太阳能电池的寿命。与在195°C下制造的器件相比,在低温下制备的器件表现出显着改善的稳定性。

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