Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems
The herein reported work describes the development of hierarchically-organized fluorescent nanomaterials inspired by plant antenna systems. These hybrid materials are based on nanostructured zeolitic materials (LTL zeolite) doped with laser dyes, which implies a synergism between organic and inorgan...
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doaj-8ed565c2f2a546f0af8d0d7bdd071ae02020-11-24T23:21:09ZengMDPI AGMaterials1996-19442017-05-0110549510.3390/ma10050495ma10050495Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting SystemsLeire Gartzia-Rivero0Jorge Bañuelos1Iñigo López-Arbeloa2Molecular Spectroscopy Laboratory, Department of Physical Chemistry, University of the Basque Country UPV/EHU, 48080 Bilbao, SpainMolecular Spectroscopy Laboratory, Department of Physical Chemistry, University of the Basque Country UPV/EHU, 48080 Bilbao, SpainMolecular Spectroscopy Laboratory, Department of Physical Chemistry, University of the Basque Country UPV/EHU, 48080 Bilbao, SpainThe herein reported work describes the development of hierarchically-organized fluorescent nanomaterials inspired by plant antenna systems. These hybrid materials are based on nanostructured zeolitic materials (LTL zeolite) doped with laser dyes, which implies a synergism between organic and inorganic moieties. The non-interconnected channeled structure and pore dimensions (7.1 Å) of the inorganic host are ideal to order and align the allocated fluorophores inside, inferring also high thermal and chemical stability. These artificial antennae harvest a broad range of chromatic radiation and convert it into predominant red-edge or alternatively white-light emission, just choosing the right dye combination and concentration ratio to modulate the efficiency of the ongoing energy transfer hops. A further degree of organization can be achieved by functionalizing the channel entrances of LTL zeolite with specific tailor-made (stopcock) molecules via a covalent linkage. These molecules plug the channels to avoid the leakage of the guest molecules absorbed inside, as well as connect the inner space of the zeolite with the outside thanks to energy transfer processes, making the coupling of the material with external devices easier.http://www.mdpi.com/1996-1944/10/5/495hybrid nanomaterialsluminescent antennaeenergy transferLTL zeolitelaser dyesstopcock molecule |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Leire Gartzia-Rivero Jorge Bañuelos Iñigo López-Arbeloa |
spellingShingle |
Leire Gartzia-Rivero Jorge Bañuelos Iñigo López-Arbeloa Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems Materials hybrid nanomaterials luminescent antennae energy transfer LTL zeolite laser dyes stopcock molecule |
author_facet |
Leire Gartzia-Rivero Jorge Bañuelos Iñigo López-Arbeloa |
author_sort |
Leire Gartzia-Rivero |
title |
Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems |
title_short |
Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems |
title_full |
Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems |
title_fullStr |
Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems |
title_full_unstemmed |
Photoactive Nanomaterials Inspired by Nature: LTL Zeolite Doped with Laser Dyes as Artificial Light Harvesting Systems |
title_sort |
photoactive nanomaterials inspired by nature: ltl zeolite doped with laser dyes as artificial light harvesting systems |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2017-05-01 |
description |
The herein reported work describes the development of hierarchically-organized fluorescent nanomaterials inspired by plant antenna systems. These hybrid materials are based on nanostructured zeolitic materials (LTL zeolite) doped with laser dyes, which implies a synergism between organic and inorganic moieties. The non-interconnected channeled structure and pore dimensions (7.1 Å) of the inorganic host are ideal to order and align the allocated fluorophores inside, inferring also high thermal and chemical stability. These artificial antennae harvest a broad range of chromatic radiation and convert it into predominant red-edge or alternatively white-light emission, just choosing the right dye combination and concentration ratio to modulate the efficiency of the ongoing energy transfer hops. A further degree of organization can be achieved by functionalizing the channel entrances of LTL zeolite with specific tailor-made (stopcock) molecules via a covalent linkage. These molecules plug the channels to avoid the leakage of the guest molecules absorbed inside, as well as connect the inner space of the zeolite with the outside thanks to energy transfer processes, making the coupling of the material with external devices easier. |
topic |
hybrid nanomaterials luminescent antennae energy transfer LTL zeolite laser dyes stopcock molecule |
url |
http://www.mdpi.com/1996-1944/10/5/495 |
work_keys_str_mv |
AT leiregartziarivero photoactivenanomaterialsinspiredbynatureltlzeolitedopedwithlaserdyesasartificiallightharvestingsystems AT jorgebanuelos photoactivenanomaterialsinspiredbynatureltlzeolitedopedwithlaserdyesasartificiallightharvestingsystems AT inigolopezarbeloa photoactivenanomaterialsinspiredbynatureltlzeolitedopedwithlaserdyesasartificiallightharvestingsystems |
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1725572589378600960 |