Nie Fei, Yan Dongpeng
Beijing Key Laboratory of Energy Conversion and Storage Materials, Key Laboratory of Radiopharmaceuticals, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, 100875, P. R. China.
Nat Commun. 2024 Nov 3;15(1):9491. doi: 10.1038/s41467-024-53963-2.
Glass, a diverse family of amorphous materials, has significantly advanced human society across various fields. The demand for flexible ultrathin glass, driven by modern optical displays and portable optoelectronics, presents challenges in energy consumption, fabrication complexity, and recycling. Here, we demonstrate flexibility and full-color luminescence in large-scale ultrathin glasses derived from readily available natural resources, specifically egg albumen (EA) and gelatin (GEL), via an evaporation-driven self-assembly process. The dynamic crosslinked networks formed through hydrogen bonding between EA and GEL impart both high hardness and flexibility to the glasses, with hardness and flexural strength values comparable to state-of-the-art inorganic and organic glasses. Additionally, the EA-GEL-based glasses exhibit excitation-dependent and time-gated chiral ultralong phosphorescence with color from blue and red, and a lifetime of up to 180.4 ms. With their easy processability and full-color emission, these biogenic glasses can be fabricated into anti-counterfeiting patterns and optical information codes.
玻璃是一类多样的非晶态材料,在各个领域极大地推动了人类社会的发展。受现代光学显示器和便携式光电子器件的驱动,对柔性超薄玻璃的需求在能源消耗、制造复杂性和回收利用方面带来了挑战。在此,我们通过蒸发驱动的自组装过程,展示了由易得的自然资源,特别是蛋清(EA)和明胶(GEL)制成的大规模超薄玻璃的柔韧性和全色发光特性。通过EA和GEL之间的氢键形成的动态交联网络赋予了玻璃高硬度和柔韧性,其硬度和抗弯强度值可与最先进的无机和有机玻璃相媲美。此外,基于EA - GEL的玻璃表现出依赖激发和时间门控的手性超长磷光,颜色从蓝色到红色,寿命长达180.4毫秒。由于其易于加工和全色发射,这些生物源玻璃可被制造成防伪图案和光学信息代码。