Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Nano Lett. 2011 Feb 9;11(2):408-13. doi: 10.1021/nl1030166. Epub 2010 Dec 20.
We demonstrate an organic/inorganic solar cell architecture based on a blend of poly(3-hexylthiophene) (P3HT) and narrow bandgap GaAs nanowires. The measured increase of device photocurrent with increased nanowire loading is correlated with structural ordering within the active layer that enhances charge transport. Coating the GaAs nanowires with TiO(x) shells passivates nanowire surface states and further improves the photovoltaic performance. We find that the P3HT/nanowire cells yield power conversion efficiencies of 2.36% under white LED illumination for devices containing 50 wt % of TiO(x)-coated GaAs nanowires. Our results constitute important progress for the use of nanowires in large area solution processed hybrid photovoltaic cells and provide insight into the role of structural ordering in the device performance.
我们展示了一种基于聚(3-己基噻吩)(P3HT)和窄带隙 GaAs 纳米线混合物的有机/无机太阳能电池结构。随着纳米线负载的增加,器件光电流的增加与增强电荷输运的活性层内的结构有序性相关联。用 TiO(x)壳涂覆 GaAs 纳米线可以钝化纳米线表面态,并进一步提高光伏性能。我们发现,在含有 50wt%TiO(x)涂覆 GaAs 纳米线的器件中,在白色 LED 照明下,P3HT/纳米线电池的功率转换效率为 2.36%。我们的结果为在大面积溶液处理混合光伏电池中使用纳米线提供了重要进展,并深入了解了结构有序性在器件性能中的作用。