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用于从可见光到近红外的全有机超材料的生物启发式构建模块。

Bio-inspired building blocks for all-organic metamaterials from visible to near-infrared.

作者信息

Holder Samuel Thomas, Estévez-Varela Carla, Pastoriza-Santos Isabel, Lopez-Garcia Martin, Oulton Ruth, Núñez-Sánchez Sara

机构信息

Quantum Engineering Technology Labs, University of Bristol, Bristol, UK.

CINBIO, Universidade de Vigo, 36310 Vigo, Spain.

出版信息

Nanophotonics. 2023 Jan 20;12(2):307-318. doi: 10.1515/nanoph-2022-0690. eCollection 2023 Jan.

Abstract

Light-harvesting complexes in natural photosynthetic systems, such as those in purple bacteria, consist of photo-reactive chromophores embedded in densely packed "antenna" systems organized in well-defined nanostructures. In the case of purple bacteria, the chromophore antennas are composed of natural J-aggregates such as bacteriochlorophylls and carotenoids. Inspired by the molecular composition of such biological systems, we create a library of organic materials composed of densely packed J-aggregates in a polymeric matrix, in which the matrix mimics the optical role of a protein scaffold. This library of organic materials shows polaritonic properties which can be tuned from the visible to the infrared by choice of the model molecule. Inspired by the molecular architecture of the light-harvesting complexes of bacteria, we study the light-matter interactions of J-aggregate-based nanorings with similar dimensions to the analogous natural nanoscale architectures. Electromagnetic simulations show that these nanorings of J-aggregates can act as resonators, with subwavelength confinement of light while concentrating the electric field in specific regions. These results open the door to bio-inspired building blocks for metamaterials from visible to infrared in an all-organic platform, while offering a new perspective on light-matter interactions at the nanoscale in densely packed organic matter in biological organisms including photosynthetic organelles.

摘要

自然光合系统中的光捕获复合物,例如紫细菌中的光捕获复合物,由嵌入在以明确的纳米结构组织的密集堆积的“天线”系统中的光反应性发色团组成。就紫细菌而言,发色团天线由诸如细菌叶绿素和类胡萝卜素等天然J-聚集体组成。受此类生物系统分子组成的启发,我们创建了一个有机材料库,该材料库由聚合物基质中密集堆积的J-聚集体组成,其中基质模拟了蛋白质支架的光学作用。这个有机材料库显示出极化子特性,通过选择模型分子可以将其从可见光调节到红外光。受细菌光捕获复合物分子结构的启发,我们研究了与类似天然纳米级结构尺寸相似的基于J-聚集体的纳米环的光与物质相互作用。电磁模拟表明,这些J-聚集体纳米环可以充当谐振器,具有亚波长光限制,同时将电场集中在特定区域。这些结果为全有机平台中从可见光到红外光的超材料的生物启发构建块打开了大门,同时为包括光合细胞器在内的生物有机体中密集堆积的有机物质中的纳米级光与物质相互作用提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d13/11501215/f579e44ac814/j_nanoph-2022-0690_fig_001.jpg

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