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Solar Cells Based on Block Copolymer Semiconductor Nanowires: Effects of Nanowire Aspect Ratio

机译:基于嵌段共聚物半导体纳米线的太阳能电池:纳米线纵横比的影响

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摘要

The solution-phase self-assembly of nanowires (NWs) from diblock copolymer semiconductors, poly(3-butylthiophene)-block-poly(3-octylthiophene), of different block compositions gave crystalline NWs of similar width (13?16 nm) but a tunable average aspect ratio (length/width) of 50?260. The power conversion efficiency of bulk heterojunction solar cells comprising the diblock copolythiophene NWs and PC71BM was found to increase with increasing aspect ratio, reaching 3.4% at the highest average aspect ratio of 260. The space charge limited current mobility of holes in neat films of the copolymer NWs and in copolymer NWs/PC71BM films (~1.0 × 10?4 cm2/(V s)) was invariant with aspect ratio, reflecting the parallel orientation of the NWs to the substrate. The enhancement of photovoltaic efficiency with increasing aspect ratio of NWs was explained in terms of increased exciton and charge photogeneration and collection in the bulk heterojunction solar cells.
机译:由二嵌段共聚物半导体,不同嵌段组成的聚(3-丁基噻吩)-嵌段-聚(3-辛基噻吩)形成的纳米线(NW)的溶液相自组装产生了具有相似宽度(13?16 nm)的晶体NW。可调整的平均纵横比(长/宽)为50-260。发现包含二嵌段共聚噻吩NW和PC71BM的体异质结太阳能电池的功率转换效率随纵横比的增加而增加,在最高平均纵横比为260时达到3.4%。空间电荷限制了空穴的纯膜中空穴的电流迁移率。共聚物NWs和共聚物NWs / PC71BM膜(〜1.0×10?4 cm2 /(V s))的纵横比是不变的,反映了NWs与基材的平行取向。用增加的NW的纵横比来提高光伏效率,是通过增加激子和电荷光生发生以及在体异质结太阳能电池中的收集来解释的。

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