School of Mechanical Engineering, Korea University, Seoul 02841, Republic of Korea.
Nanoscale. 2017 Jul 6;9(26):9139-9147. doi: 10.1039/c7nr00886d.
Bioluminescent jellyfish has a unique structure derived from fiber/polymer interfaces that is advantageous for effective light scattering in the dark, deep sea water. Herein, we demonstrate the fabrication of bio-inspired hybrid films by mimicry of the jellyfish's structure, leading to excellent light-scattering performance and defrosting capability. A haze value reaching 59.3% and a heating temperature of up to 292 °C were achieved with the films. Accordingly, the developed surface constitutes an attractive optical device for lighting applications, especially for street or vehicle luminaries for freezing Arctic-climate countries. The morphological details of the hybrid films were revealed by scanning electron microscopy. The light-scattering properties of these films were examined by ultraviolet-visible-infrared spectrophotometry and anti-glare effect analyses. The defrosting performance of the hybrid films was evaluated via heating tests and infra-red observations.
发光水母具有独特的纤维/聚合物界面结构,有利于在黑暗、深海水中有效进行光散射。在此,我们通过模仿水母的结构,制造出具有仿生灵感的混合薄膜,从而实现出色的光散射性能和除冰能力。该薄膜具有高达 59.3%的雾度值和 292°C 的加热温度。因此,所开发的表面构成了一种有吸引力的照明应用光学器件,特别适合用于极寒地区的街道或车辆照明。通过扫描电子显微镜揭示了混合薄膜的形态细节。通过紫外可见红外分光光度计和防眩光效果分析来检查这些薄膜的光散射特性。通过加热测试和红外观察评估了混合薄膜的除冰性能。