Laboratory of Organic Electronics, Linköping University, SE-601 74 Norrköping, Sweden.
Center for Nano Science and Technology@PoliMi, Istituto Italiano di Tecnologia (IIT), Via Giovanni Pascoli 70/3, 20133 Milano, Italy.
Nano Lett. 2020 Oct 14;20(10):7243-7250. doi: 10.1021/acs.nanolett.0c02604. Epub 2020 Oct 1.
Certain bird species have evolved spectacular colors that arise from organized nanostructures of melanin. Its high refractive index (∼1.8) and broadband absorptive properties enable vivid structural colors that are nonsusceptible to photobleaching. Mimicking natural melanin structural coloration could enable several important applications, in particular, for noniridescent systems with colors that are independent of incidence angle. Here, we address this by forming melanin photonic crystal microdomes by inkjet printing. Owing to their curved nature, the microdomes exhibit noniridescent vivid structural coloration, tunable throughout the visible range via the size of the nanoparticles. Large-area arrays (>1 cm) of high-quality photonic microdomes could be printed on both rigid and flexible substrates. Combined with scalable fabrication and the nontoxicity of melanin, the presented photonic microdomes with noniridescent structural coloration may find use in a variety of applications, including sensing, displays, and anticounterfeit holograms.
某些鸟类的绚丽色彩源于黑色素的有序纳米结构。它的高折射率(约 1.8)和宽带吸收特性使其具有不易褪色的鲜艳结构色。模仿天然黑色素的结构色可以实现多种重要应用,特别是对于非虹彩系统,其颜色不依赖于入射角。在这里,我们通过喷墨打印形成黑色素光子晶体微球来解决这个问题。由于其弯曲的性质,微球呈现出非虹彩的鲜艳结构色,通过纳米颗粒的大小可以在整个可见光范围内进行调节。高质量的光子微球可以在刚性和柔性衬底上打印大面积 (>1 cm) 的阵列。结合可扩展的制造工艺和黑色素的无毒特性,这种具有非虹彩结构色的光子微球可能会在各种应用中找到用途,包括传感、显示和防伪全息图。