1] Department of Electrical Engineering and Computer Science, The University of Michigan, Ann Arbor, Michigan 48109, USA [2].
Department of Electrical Engineering and Computer Science, The University of Michigan, Ann Arbor, Michigan 48109, USA.
Sci Rep. 2014 Feb 28;4:4192. doi: 10.1038/srep04192.
We present ultra-thin (6 to 31 nm) undoped amorphous silicon/organic hybrid solar cell structure, which can transmit desired color of light. The transmitted colors show great angular tolerance due to the negligible optical phase associated with light propagating in ultra-thin amorphous silicon (a-Si) layers. We achieved the power conversion efficiency of the hybrid cells up to 2 %; and demonstrated that most of the absorbed photons in the undoped a-Si layer contributed to the extracted electric charges due to the suppressed electron-hole recombination in the ultra-thin a-Si layer. We also show the resonance is invariant with respect to the angle of incidence up to ± 70° regardless of the polarization of the incident light. Our exploration provides a design to realize energy harvesting colored photovoltaic panels for innovative applications.
我们提出了一种超薄膜(6 至 31nm)的无掺杂非晶硅/有机杂化太阳能电池结构,它可以传输所需颜色的光。由于与光在超薄非晶硅(a-Si)层中传播相关的光学相位可忽略不计,因此所传输的颜色具有很大的角度容限。我们实现了高达 2%的杂化电池的功率转换效率;并证明了由于在超薄 a-Si 层中抑制了电子-空穴复合,因此在无掺杂 a-Si 层中吸收的大部分光子都有助于提取电荷。我们还表明,无论入射光的偏振如何,共振都与入射角的 ±70°无关。我们的探索为实现用于创新应用的能量收集彩色光伏电池板提供了一种设计。