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聚合物复制品揭示的花朵紫外线图案——由表面结构引起。

Ultraviolet patterns of flowers revealed in polymer replica - caused by surface architecture.

作者信息

Schulte Anna J, Mail Matthias, Hahn Lisa A, Barthlott Wilhelm

机构信息

Nees Institute for Biodiversity of Plants, University of Bonn, Venusbergweg 22, D-53115 Bonn, Germany.

Fraunhofer Institute for Technological Trend Analyses INT, Appelsgarten 2, D-53879 Euskirchen, Germany.

出版信息

Beilstein J Nanotechnol. 2019 Feb 13;10:459-466. doi: 10.3762/bjnano.10.45. eCollection 2019.

Abstract

Angiosperms and their pollinators are adapted in a close co-evolution. For both the plants and pollinators, the functioning of the visual signaling system is highly relevant for survival. As the frequency range of visual perception in many insects extends into the ultraviolet (UV) region, UV-patterns of plants play an important role in the flower-pollinator interaction. It is well known that many flowers contain UV-absorbing pigments in their petal cells, which are localized in vacuoles. However, the contribution of the petal surface microarchitecture to UV-reflection remains uncertain. The correlation between the surface structure and its reflective properties is also relevant for biomimetic applications, for example, in the field of photovoltaics. Based on previous work, we selected three model species with distinct UV-patterns to explore the possible contribution of the surface architecture to the UV-signaling. Using a replication technique, we transferred the petal surface structure onto a transparent polymer. Upon illumination with UV-light, we observed structural-based patterns in the replicas that were surprisingly comparable to those of the original petals. For the first time, this experiment has shown that the parameters of the surface structure lead to an enhancement in the amount of absorbed UV-radiation. Spectrophotometric measurements revealed up to 50% less reflection in the UV-absorbing regions than in the UV-reflecting areas. A comparative characterization of the micromorphology of the UV-reflecting and UV-absorbing areas showed that, in principle, a hierarchical surface structure results in more absorption. Therefore, the results of our experiments demonstrate the structural-based amplification of UV-reflection and provide a starting point for the design of bioinspired antireflective and respectively strongly absorbing surfaces.

摘要

被子植物及其传粉者在紧密的共同进化中相互适应。对于植物和传粉者而言,视觉信号系统的功能对其生存至关重要。由于许多昆虫的视觉感知频率范围延伸至紫外线(UV)区域,植物的紫外线图案在花与传粉者的相互作用中发挥着重要作用。众所周知,许多花朵的花瓣细胞中含有吸收紫外线的色素,这些色素位于液泡中。然而,花瓣表面微观结构对紫外线反射的贡献仍不确定。表面结构与其反射特性之间的相关性在仿生应用中也具有重要意义,例如在光伏领域。基于先前的研究工作,我们选择了三种具有不同紫外线图案的模式物种,以探究表面结构对紫外线信号的可能贡献。我们采用复制技术,将花瓣表面结构转移到透明聚合物上。在用紫外线照射时,我们在复制品中观察到基于结构的图案,这些图案与原始花瓣的图案惊人地相似。该实验首次表明,表面结构参数会导致吸收的紫外线辐射量增加。分光光度测量显示,吸收紫外线区域的反射比反射紫外线区域少多达50%。对反射紫外线和吸收紫外线区域的微观形态进行比较表征表明,原则上,分级表面结构会导致更多的吸收。因此,我们的实验结果证明了基于结构的紫外线反射增强,并为设计受生物启发的抗反射和强吸收表面提供了一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0166/6404398/5c777de29000/Beilstein_J_Nanotechnol-10-459-g002.jpg

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