首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Dicyanovinyl substituted oligothiophenes: Thermal stability, mobility measurements, and performance in photovoltaic devices
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Dicyanovinyl substituted oligothiophenes: Thermal stability, mobility measurements, and performance in photovoltaic devices

机译:双氰基乙烯基取代的低聚噻吩:热稳定性,迁移率测量和光伏器件的性能

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摘要

A series of dicyanovinyl-oligothiophenes are investigated concerning their thermal stability, absorption in thin film, and hole mobility. Due to very high extinction coefficients, these materials are interesting for application as donor in solar cells. The quinquethiophene DCV2-5T, which shows a hole mobility of 2.2×10~5 cm~2/Vs, is used as donor material in a flat heterojunction organic small molecule solar cells. Despite a very thin donor layer of only 6 nm, these devices exhibit in a planar heterojunction with 15 nm C_(60) an efficiency of up to 2.8% with a fill factor of up to 58%, a short circuit current density of 5.2 mA/cm~2, an open circuit voltage of 1.03 V, and an external quantum efficiency of 30% in the green spectral range.
机译:研究了一系列二氰基乙烯基低聚噻吩的热稳定性,薄膜吸收率和空穴迁移率。由于非常高的消光系数,这些材料作为太阳能电池的施主很有用。空穴迁移率为2.2×10〜5 cm〜2 / Vs的喹噻吩DCV2-5T被用作平面异质结有机小分子太阳能电池中的供体材料。尽管施主层非常薄,仅为6 nm,但这些器件在15 nm C_(60)的平面异质结中仍具有高达2.8%的效率,高达58%的填充系数,5.2 mA的短路电流密度/ cm〜2,开路电压为1.03 V,在绿色光谱范围内的外部量子效率为30%。

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