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

Author:

Holder Samuel Thomas1ORCID,Estévez-Varela Carla2ORCID,Pastoriza-Santos Isabel2ORCID,Lopez-Garcia Martin3ORCID,Oulton Ruth1ORCID,Núñez-Sánchez Sara2ORCID

Affiliation:

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

2. CINBIO, Universidade de Vigo , 36310 Vigo , Spain

3. Natural and Artificial Photonic Structures and Devices Group , INL-International Iberian Nanotechnology Laboratory , Braga 4715-330 , Portugal

Abstract

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 Rhodospirillum molischianum 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.

Funder

Engineering and Physical Sciences Research Council

Fundação para a Ciência e a Tecnologia

Xunta de Galicia

Ministerio de Ciencia e Innovación

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

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