首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Doping Poiy(3-hexylthiophene) Nanowires with Selenophene Increases the Performance of Polymer-Nanowire Solar Cells
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Doping Poiy(3-hexylthiophene) Nanowires with Selenophene Increases the Performance of Polymer-Nanowire Solar Cells

机译:用硒酚掺杂多(3-己基噻吩)纳米线可提高聚合物-纳米线太阳能电池的性能

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摘要

Developing novel materials analogous to poly(3-hexylthiophene) (P3HT) with increased absorption range and good one-dimensional self-assembly properties should increase photovoltaic performance while taking advantage of the well-established structure—property relationships developed for P3HT. Herein, we have fabricated novel polymer nanowires composed of P3HT doped with varying amounts of selenophene. Doping is accomplished by statistical polymerization and results in the incorporation of selenophene into the P3HT crystal lattice. Selenophene doping increases optical absorption far beyond what can be achieved by simply blending two materials. Polymer nanowire solar cells using selenphene-doped P3HT outperform native P3HT nanowire and corresponding ternary blend solar cells, reaching an overall maximum performance of >4% PCE. These are some of the highest values of any polymer nanowire solar cells and show that the selenophene-doping strategy is important for achieving high-performance devices.
机译:开发类似于聚(3-己基噻吩)(P3HT)的新型材料,该材料具有更大的吸收范围和良好的一维自组装特性,应在充分利用结构完善的特性(为P3HT开发的特性)的同时提高光伏性能。在这里,我们已经制作了新型的聚合物纳米线,该纳米线由掺杂有不同量硒烯的P3HT组成。通过统计聚合完成掺杂,并导致硒烯掺入P3HT晶格中。硒烯掺杂增加的光吸收远远超过简单地混合两种材料所能达到的。使用硒烯掺杂的P3HT的聚合物纳米线太阳能电池优于天然P3HT纳米线和相应的三元共混太阳能电池,整体最大性能达到PCE> 4%。这些是所有聚合物纳米线太阳能电池中的某些最高值,表明硒烯掺杂策略对于实现高性能器件很重要。

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