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Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators

The potential use of nanostructured dipeptide self-assemblies in materials science for energy harvesting devices is a highly sought-after area of research. Specifically, aromatic cyclo-dipeptides containing tryptophan have garnered attention due to their wide-bandgap semiconductor properties, high m...

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Autores principales: Santos, Daniela, Baptista, Rosa M. F., Handa, Adelino, Almeida, Bernardo, Rodrigues, Pedro V., Castro, Cidália, Machado, Ana, Rodrigues, Manuel J. L. F., Belsley, Michael, de Matos Gomes, Etelvina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384039/
https://www.ncbi.nlm.nih.gov/pubmed/37512272
http://dx.doi.org/10.3390/ma16144993
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author Santos, Daniela
Baptista, Rosa M. F.
Handa, Adelino
Almeida, Bernardo
Rodrigues, Pedro V.
Castro, Cidália
Machado, Ana
Rodrigues, Manuel J. L. F.
Belsley, Michael
de Matos Gomes, Etelvina
author_facet Santos, Daniela
Baptista, Rosa M. F.
Handa, Adelino
Almeida, Bernardo
Rodrigues, Pedro V.
Castro, Cidália
Machado, Ana
Rodrigues, Manuel J. L. F.
Belsley, Michael
de Matos Gomes, Etelvina
author_sort Santos, Daniela
collection PubMed
description The potential use of nanostructured dipeptide self-assemblies in materials science for energy harvesting devices is a highly sought-after area of research. Specifically, aromatic cyclo-dipeptides containing tryptophan have garnered attention due to their wide-bandgap semiconductor properties, high mechanical rigidity, photoluminescence, and nonlinear optical behavior. In this study, we present the development of a hybrid system comprising biopolymer electrospun fibers incorporated with the chiral cyclo-dipeptide L-Tryptophan-L-Tyrosine. The resulting nanofibers are wide-bandgap semiconductors (bandgap energy 4.0 eV) consisting of self-assembled nanotubes embedded within a polymer matrix, exhibiting intense blue photoluminescence. Moreover, the cyclo-dipeptide L-Tryptophan-L-Tyrosine incorporated into polycaprolactone nanofibers displays a strong effective second harmonic generation signal of 0.36 pm/V and shows notable piezoelectric properties with a high effective coefficient of 22 pCN [Formula: see text] , a piezoelectric voltage coefficient of [Formula: see text] VmN [Formula: see text] and a peak power density delivered by the nanofiber mat of [Formula: see text] Wcm [Formula: see text]. These hybrid systems hold great promise for applications in the field of nanoenergy harvesting and nanophotonics.
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spelling pubmed-103840392023-07-30 Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators Santos, Daniela Baptista, Rosa M. F. Handa, Adelino Almeida, Bernardo Rodrigues, Pedro V. Castro, Cidália Machado, Ana Rodrigues, Manuel J. L. F. Belsley, Michael de Matos Gomes, Etelvina Materials (Basel) Article The potential use of nanostructured dipeptide self-assemblies in materials science for energy harvesting devices is a highly sought-after area of research. Specifically, aromatic cyclo-dipeptides containing tryptophan have garnered attention due to their wide-bandgap semiconductor properties, high mechanical rigidity, photoluminescence, and nonlinear optical behavior. In this study, we present the development of a hybrid system comprising biopolymer electrospun fibers incorporated with the chiral cyclo-dipeptide L-Tryptophan-L-Tyrosine. The resulting nanofibers are wide-bandgap semiconductors (bandgap energy 4.0 eV) consisting of self-assembled nanotubes embedded within a polymer matrix, exhibiting intense blue photoluminescence. Moreover, the cyclo-dipeptide L-Tryptophan-L-Tyrosine incorporated into polycaprolactone nanofibers displays a strong effective second harmonic generation signal of 0.36 pm/V and shows notable piezoelectric properties with a high effective coefficient of 22 pCN [Formula: see text] , a piezoelectric voltage coefficient of [Formula: see text] VmN [Formula: see text] and a peak power density delivered by the nanofiber mat of [Formula: see text] Wcm [Formula: see text]. These hybrid systems hold great promise for applications in the field of nanoenergy harvesting and nanophotonics. MDPI 2023-07-14 /pmc/articles/PMC10384039/ /pubmed/37512272 http://dx.doi.org/10.3390/ma16144993 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Santos, Daniela
Baptista, Rosa M. F.
Handa, Adelino
Almeida, Bernardo
Rodrigues, Pedro V.
Castro, Cidália
Machado, Ana
Rodrigues, Manuel J. L. F.
Belsley, Michael
de Matos Gomes, Etelvina
Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title_full Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title_fullStr Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title_full_unstemmed Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title_short Nanostructured Electrospun Fibers with Self-Assembled Cyclo-L-Tryptophan-L-Tyrosine Dipeptide as Piezoelectric Materials and Optical Second Harmonic Generators
title_sort nanostructured electrospun fibers with self-assembled cyclo-l-tryptophan-l-tyrosine dipeptide as piezoelectric materials and optical second harmonic generators
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384039/
https://www.ncbi.nlm.nih.gov/pubmed/37512272
http://dx.doi.org/10.3390/ma16144993
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