Malinowski Corey, He Fengjie, Zhao Yihong, Chang Ivan, Hatchett David W, Zhai Shengjie, Zhao Hui
Department of Mechanical Engineering, University of Nevada Las Vegas NV 89154 USA
Department of Chemistry and Biochemistry, University of Nevada Las Vegas NV 89154 USA.
RSC Adv. 2019 Dec 9;9(70):40792-40799. doi: 10.1039/c9ra07391d.
Simultaneous high transparency and high haze are necessary for high-efficiency optical, photonic, and optoelectronic applications. However, a typical highly transparent film lacks high optical haze or . Here, we report a silk fibroin-based optical film that exhibits both ultrahigh optical transparency (>93%) and ultrahigh optical transmission haze (>65%). Also, in combination with the soft lithography method, different nanostructured silk fibroin films are presented and their optical properties are characterized as well. To demonstrate its exceptional performance in both high transmission and high optical haze, we combine the silk fibroin with the silicon photodiode and show that the efficiency can be increased by 6.96% with the silk fibroin film without patterns and 14.9% with the nanopatterned silk fibroin film. Silk provides excellent mechanical, optical, and electrical properties, and the reported high-performance silk fibroin can enable the development of next-generation biocompatible eco-friendly flexible electronic and optical devices.
对于高效光学、光子和光电器件应用而言,同时具备高透明度和高雾度是必要的。然而,典型的高透明薄膜缺乏高光学雾度或……在此,我们报道了一种基于丝素蛋白的光学薄膜,其具有超高的光学透明度(>93%)和超高的光学透过雾度(>65%)。此外,结合软光刻方法,展示了不同纳米结构的丝素蛋白薄膜,并对其光学性能进行了表征。为了证明其在高透过率和高光学雾度方面的卓越性能,我们将丝素蛋白与硅光电二极管相结合,结果表明,无图案的丝素蛋白薄膜可使效率提高6.96%,而纳米图案化的丝素蛋白薄膜可使效率提高14.9%。丝绸具有优异的机械、光学和电学性能,所报道的高性能丝素蛋白能够推动下一代生物相容性环保柔性电子和光学器件的发展。