Electrical Engineering Program, King Abdullah University of Science & Technology (KAUST) , Thuwal 23955-6900, Saudi Arabia.
Department of Optics and Photonics, National Central University , Chung-Li 320, Taiwan.
ACS Nano. 2016 Jan 26;10(1):549-55. doi: 10.1021/acsnano.5b05564. Epub 2015 Dec 3.
Fused-silica packaging glass fabricated with a hierarchical structure by integrating small (ultrathin nanorods) and large (honeycomb nanowalls) structures was demonstrated with exceptional light-harvesting solar performance, which is attributed to the subwavelength feature of the nanorods and an efficient scattering ability of the honeycomb nanowalls. Si solar cells covered with the hierarchically structured packaging glass exhibit enhanced conversion efficiency by 5.2% at normal incidence, and the enhancement went up to 46% at the incident angle of 60°. The hierarchical structured packaging glass shows excellent self-cleaning characteristics: 98.8% of the efficiency is maintained after 6 weeks of outdoor exposure, indicating that the nanostructured surface effectively repels polluting dust/particles. The presented self-cleaning omnidirectional light-harvesting design using the hierarchical structured packaging glass is a potential universal scheme for practical solar applications.
采用小(超薄膜纳米棒)和大(蜂窝纳米墙)结构集成的分层结构熔融硅封装玻璃表现出了出色的光收集太阳能性能,这归因于纳米棒的亚波长特性和蜂窝纳米墙的高效散射能力。用分层结构封装玻璃覆盖的 Si 太阳能电池在正常入射时的转换效率提高了 5.2%,在入射角为 60°时提高了 46%。分层结构封装玻璃具有优异的自清洁特性:户外暴露 6 周后,效率仍保持在 98.8%,表明纳米结构表面有效地排斥了污染的灰尘/颗粒。使用分层结构封装玻璃的这种自清洁全向光收集设计是一种用于实际太阳能应用的潜在通用方案。