Department of Materials Science and Engineering, Division of Advanced Materials Science, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, Korea.
Small. 2015 Apr 24;11(16):1947-53. doi: 10.1002/smll.201402781. Epub 2014 Dec 15.
Flexible amorphous silicon (a-Si:H) solar cells with high photoconversion efficiency (PCE) are demonstrated by embedding hexagonal pyramid nanostructures below a Ag/indium tin oxide (ITO) reflector. The nanostructures constructed by nanoimprint lithography using soft materials allow the top ITO electrode to spontaneously form parabolic nanostructures. Nanoimprint lithography using soft materials is simple, and is conducted at low temperature. The resulting structure has excellent durability under repeated bending, and thus, flexible nanostructures are successfully constructed on flexible a-Si:H solar cells on plastic film. The nanoimprinted pyramid back reflector provides a high angular light scattering with haze reflectance >98% throughout the visible spectrum. The spontaneously formed parabolic nanostructure on the top surface of the a-Si:H solar cells both reduces reflection and scatters incident light into the absorber layer, thereby elongating the optical path length. As a result, the nanopatterned a-Si:H solar cells, fabricated on polyethersulfone (PES) film, exhibit excellent mechanical flexibility and PCE increased by 48% compared with devices on a flat substrate.
通过在银/铟锡氧化物(ITO)反射器下方嵌入六方金字塔纳米结构,展示了具有高光转化效率(PCE)的柔性非晶硅(a-Si:H)太阳能电池。使用软材料通过纳米压印光刻技术构建的纳米结构允许顶部 ITO 电极自发形成抛物线纳米结构。使用软材料的纳米压印光刻技术简单,并且在低温下进行。由此产生的结构在反复弯曲下具有出色的耐用性,因此,成功地在塑料薄膜上的柔性 a-Si:H 太阳能电池上构建了柔性纳米结构。纳米压印的金字塔背反射器在整个可见光谱范围内提供了高角度光散射,雾度反射率>98%。在 a-Si:H 太阳能电池的上表面自发形成的抛物线纳米结构既减少了反射,又将入射光散射到吸收层中,从而延长了光程。因此,与在平坦基底上的器件相比,在聚醚砜(PES)薄膜上制造的纳米图案化 a-Si:H 太阳能电池具有出色的机械柔韧性,并且 PCE 提高了 48%。