Cargando…

Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films

This paper reports the results of the influence of the energy of laser pulses during laser ablation on the morphology and electro-physical properties of LiNbO(3) nanocrystalline films. It is found that increasing laser pulse energy from 180 to 220 mJ results in the concentration of charge carriers i...

Descripción completa

Detalles Bibliográficos
Autores principales: Vakulov, Zakhar, Geldash, Andrey, Khakhulin, Daniil, Il’ina, Marina V., Il’in, Oleg I., Klimin, Viktor S., Dzhuplin, Vladimir N., Konoplev, Boris G., He, Zhubing, Ageev, Oleg A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558364/
https://www.ncbi.nlm.nih.gov/pubmed/32916820
http://dx.doi.org/10.3390/ma13183984
_version_ 1783594625597964288
author Vakulov, Zakhar
Geldash, Andrey
Khakhulin, Daniil
Il’ina, Marina V.
Il’in, Oleg I.
Klimin, Viktor S.
Dzhuplin, Vladimir N.
Konoplev, Boris G.
He, Zhubing
Ageev, Oleg A.
author_facet Vakulov, Zakhar
Geldash, Andrey
Khakhulin, Daniil
Il’ina, Marina V.
Il’in, Oleg I.
Klimin, Viktor S.
Dzhuplin, Vladimir N.
Konoplev, Boris G.
He, Zhubing
Ageev, Oleg A.
author_sort Vakulov, Zakhar
collection PubMed
description This paper reports the results of the influence of the energy of laser pulses during laser ablation on the morphology and electro-physical properties of LiNbO(3) nanocrystalline films. It is found that increasing laser pulse energy from 180 to 220 mJ results in the concentration of charge carriers in LiNbO(3) films decreasing from 8.6 × 10(15) to 1.0 × 10(13) cm(−3), with the mobility of charge carriers increasing from 0.43 to 17.4 cm(2)/(V·s). In addition, experimental studies of sublayer material effects on the geometric parameters of carbon nanotubes (CNTs) are performed. It is found that the material of the lower electrode has a significant effect on the formation of CNTs. CNTs obtained at the same growth time on a sample with a Cr sublayer have a smaller diameter and a longer length compared to samples with a V sublayer. Based on the obtained results, the architecture of the energy nanogenerator is proposed. The current generated by the nanogenerator is 18 nA under mechanical stress of 600 nN. The obtained piezoelectric nanogenerator parameters are used to estimate the parameters of the hybrid-carbon-nanostructures-based piezoelectric energy converter. Obtained results are promising for the development of efficient energy converters for alternative energy devices based on lead-free ferroelectric films.
format Online
Article
Text
id pubmed-7558364
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75583642020-10-22 Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films Vakulov, Zakhar Geldash, Andrey Khakhulin, Daniil Il’ina, Marina V. Il’in, Oleg I. Klimin, Viktor S. Dzhuplin, Vladimir N. Konoplev, Boris G. He, Zhubing Ageev, Oleg A. Materials (Basel) Article This paper reports the results of the influence of the energy of laser pulses during laser ablation on the morphology and electro-physical properties of LiNbO(3) nanocrystalline films. It is found that increasing laser pulse energy from 180 to 220 mJ results in the concentration of charge carriers in LiNbO(3) films decreasing from 8.6 × 10(15) to 1.0 × 10(13) cm(−3), with the mobility of charge carriers increasing from 0.43 to 17.4 cm(2)/(V·s). In addition, experimental studies of sublayer material effects on the geometric parameters of carbon nanotubes (CNTs) are performed. It is found that the material of the lower electrode has a significant effect on the formation of CNTs. CNTs obtained at the same growth time on a sample with a Cr sublayer have a smaller diameter and a longer length compared to samples with a V sublayer. Based on the obtained results, the architecture of the energy nanogenerator is proposed. The current generated by the nanogenerator is 18 nA under mechanical stress of 600 nN. The obtained piezoelectric nanogenerator parameters are used to estimate the parameters of the hybrid-carbon-nanostructures-based piezoelectric energy converter. Obtained results are promising for the development of efficient energy converters for alternative energy devices based on lead-free ferroelectric films. MDPI 2020-09-09 /pmc/articles/PMC7558364/ /pubmed/32916820 http://dx.doi.org/10.3390/ma13183984 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vakulov, Zakhar
Geldash, Andrey
Khakhulin, Daniil
Il’ina, Marina V.
Il’in, Oleg I.
Klimin, Viktor S.
Dzhuplin, Vladimir N.
Konoplev, Boris G.
He, Zhubing
Ageev, Oleg A.
Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title_full Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title_fullStr Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title_full_unstemmed Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title_short Piezoelectric Energy Harvester Based on LiNbO(3) Thin Films
title_sort piezoelectric energy harvester based on linbo(3) thin films
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558364/
https://www.ncbi.nlm.nih.gov/pubmed/32916820
http://dx.doi.org/10.3390/ma13183984
work_keys_str_mv AT vakulovzakhar piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT geldashandrey piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT khakhulindaniil piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT ilinamarinav piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT ilinolegi piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT kliminviktors piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT dzhuplinvladimirn piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT konoplevborisg piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT hezhubing piezoelectricenergyharvesterbasedonlinbo3thinfilms
AT ageevolega piezoelectricenergyharvesterbasedonlinbo3thinfilms