Orientation-dependent photonic bandgaps in gold-dust weevil scales and their titania bioreplicates.

IF 2.6 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Beilstein Journal of Nanotechnology Pub Date : 2025-01-02 eCollection Date: 2025-01-01 DOI:10.3762/bjnano.16.1
Norma Salvadores Farran, Limin Wang, Primoz Pirih, Bodo D Wilts
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Abstract

The scales of the gold-dust weevil Hypomeces squamosus are green because of three-dimensional diamond-type chitin-air photonic crystals with an average periodicity of about 430 nm and a chitin fill fraction of about 0.44. A single scale usually contains one to three crystallites with different lattice orientations. The reciprocal space images and reflection spectra obtained from single domains indicated a partial photonic bandgap in the wavelength range from 450 to 650 nm. Light reflected from {111}-oriented domains is green-yellow. Light reflected from blue, {100}-oriented domains exhibits polarization conversion, rotating the angle of linearly polarized light. The overall coloration, resulting from the reflections from many scales, is close to uniformly diffuse because of the random orientation of the domains. Using titania sol-gel chemistry, we produced negative replicas that exhibited a 70 to 120 nm redshift of the bandgap, depending on the lattice orientation. The wavelength shift in {100} orientation is supported by full-wave optical modeling of a dual diamond network with an exchanged fill fraction (0.56) of the material with the refractive index in the range of 1.55 to 2.00. The study suggests that the effective refractive index of titania in the 3D lattice is similar to that in sol-gel films. The study demonstrates the potential of replicating complex biophotonic structures using the sol-gel technique. Optimization of the sol-gel process could lead to customizable photonic bandgaps that might be used in novel optical materials.

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金尘象鼻虫鳞片及其二氧化钛生物复制体中取向相关的光子带隙。
金粉象鼻虫鳞片呈绿色,主要是由于三维金刚石型几丁质-空气光子晶体,其平均周期约为430 nm,几丁质填充分数约为0.44。单个尺度通常包含一到三个具有不同晶格取向的晶体。从单畴得到的倒易空间图像和反射光谱表明,在450 ~ 650 nm波长范围内存在部分光子带隙。从{111}取向域反射的光是黄绿色的。从蓝色{100}定向畴反射的光呈现偏振转换,旋转线偏振光的角度。由于区域的方向随机,从多个尺度反射得到的整体颜色接近均匀扩散。利用二氧化钛溶胶-凝胶化学,我们制作了负副本,显示出70到120纳米的带隙红移,这取决于晶格的方向。在{100}方向上的波长位移是由双金刚石网络的全波光学建模支持的,交换填充分数(0.56)的材料的折射率在1.55到2.00之间。研究表明,钛在三维晶格中的有效折射率与在溶胶-凝胶膜中的有效折射率相似。该研究证明了利用溶胶-凝胶技术复制复杂生物光子结构的潜力。溶胶-凝胶过程的优化可能导致可定制的光子带隙,可能用于新型光学材料。
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来源期刊
Beilstein Journal of Nanotechnology
Beilstein Journal of Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
5.70
自引率
3.20%
发文量
109
审稿时长
2 months
期刊介绍: The Beilstein Journal of Nanotechnology is an international, peer-reviewed, Open Access journal. It provides a unique platform for rapid publication without any charges (free for author and reader) – Platinum Open Access. The content is freely accessible 365 days a year to any user worldwide. Articles are available online immediately upon publication and are publicly archived in all major repositories. In addition, it provides a platform for publishing thematic issues (theme-based collections of articles) on topical issues in nanoscience and nanotechnology. The journal is published and completely funded by the Beilstein-Institut, a non-profit foundation located in Frankfurt am Main, Germany. The editor-in-chief is Professor Thomas Schimmel – Karlsruhe Institute of Technology. He is supported by more than 20 associate editors who are responsible for a particular subject area within the scope of the journal.
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