Division of Solid State Physics and The Nanometer Structure Consortium (nmC@LU), Lund University , Box 118, 22100 Lund, Sweden.
Nano Lett. 2015 Mar 11;15(3):1809-14. doi: 10.1021/nl504559g. Epub 2015 Feb 25.
We have compared the absorption in InP core-shell nanowire p-i-n junctions in lateral and vertical orientation. Arrays of vertical core-shell nanowires with 400 nm pitch and 280 nm diameter, as well as corresponding lateral single core-shell nanowires, were configured as photovoltaic devices. The photovoltaic characteristics of the samples, measured under 1 sun illumination, showed a higher absorption in lateral single nanowires compared to that in individual vertical nanowires, arranged in arrays with 400 nm pitch. Electromagnetic modeling of the structures confirmed the experimental observations and showed that the absorption in a vertical nanowire in an array depends strongly on the array pitch. The modeling demonstrated that, depending on the array pitch, absorption in a vertical nanowire can be lower or higher than that in a lateral nanowire with equal absorption predicted at a pitch of 510 nm for our nanowire geometry. The technology described in this Letter facilitates quantitative comparison of absorption in laterally and vertically oriented core-shell nanowire p-i-n junctions and can aid in the design, optimization, and performance evaluation of nanowire-based core-shell photovoltaic devices.
我们比较了在横向和纵向取向的 InP 核壳纳米线 p-i-n 结中的吸收。400nm 间距和 280nm 直径的垂直核壳纳米线阵列以及相应的横向单核壳纳米线被配置为光伏器件。在 1 个太阳光照射下测量的样品的光伏特性表明,与排列在 400nm 间距的阵列中的单个垂直纳米线相比,横向单纳米线的吸收更高。对结构的电磁建模证实了实验观察结果,并表明阵列间距强烈影响垂直纳米线中的吸收。该建模表明,取决于阵列间距,垂直纳米线中的吸收可能低于或高于具有相同吸收的横向纳米线,对于我们的纳米线几何形状,在 510nm 的间距下预测了吸收。本文所述的技术便于对横向和纵向取向的核壳纳米线 p-i-n 结中的吸收进行定量比较,并有助于基于纳米线的核壳光伏器件的设计、优化和性能评估。