材料科学
纳米技术
光子学
背景(考古学)
透明度(行为)
结构化
光散射
光学材料
超材料
光子超材料
天然材料
散射
光电子学
光学
高分子科学
计算机科学
物理
财务
古生物学
经济
生物
计算机安全
作者
Gianni Jacucci,Lukas Schertel,Yating Zhang,Han Yang,Silvia Vignolini
标识
DOI:10.1002/adma.202001215
摘要
Abstract The possibility of structuring material at the nanoscale is essential to control light–matter interactions and therefore fabricate next‐generation paints and coatings. In this context, nature can serve not only as a source of inspiration for the design of such novel optical structures, but also as a primary source of materials. Here, some of the strategies used in nature to optimize light–matter interaction are reviewed and some of the recent progress in the production of optical materials made solely of plant‐derived building blocks is highlighted. In nature, nano‐ to micrometer‐sized structured materials made from biopolymers are at the origin of most of the light‐transport effects. How natural photonic systems manage light scattering and what can be learned from plants and animals to produce photonic materials from biopolymers are discussed. Tuning the light‐scattering properties via structural variations allows a wide range of appearances to be obtained, from whiteness to transparency, using the same renewable and biodegradable building blocks. Here, various transparent and white cellulose‐based materials produced so far are highlighted.
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