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Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide

Ferroelectric barium titanate (BTO) powder particles were encapsulated by three different sizes of reduced graphene oxide (rGO) platelets. The size of the graphene oxide (GO) platelets is controlled by varying the horn type ultrasonic times, i.e. 0, 30, and 60 min, respectively, and they are reduced...

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Autores principales: Jun, So-Yeon, Park, SeungHun, Baek, Nam Wuk, Lee, Tae-Young, Yoo, Sehoon, Jung, Donggeun, Kim, Jin-Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9157740/
https://www.ncbi.nlm.nih.gov/pubmed/35747533
http://dx.doi.org/10.1039/d2ra01266a
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author Jun, So-Yeon
Park, SeungHun
Baek, Nam Wuk
Lee, Tae-Young
Yoo, Sehoon
Jung, Donggeun
Kim, Jin-Young
author_facet Jun, So-Yeon
Park, SeungHun
Baek, Nam Wuk
Lee, Tae-Young
Yoo, Sehoon
Jung, Donggeun
Kim, Jin-Young
author_sort Jun, So-Yeon
collection PubMed
description Ferroelectric barium titanate (BTO) powder particles were encapsulated by three different sizes of reduced graphene oxide (rGO) platelets. The size of the graphene oxide (GO) platelets is controlled by varying the horn type ultrasonic times, i.e. 0, 30, and 60 min, respectively, and they are reduced with hydrazine to obtain rGO-encapsulated BTO (rGO@BTO) film. The rGO@BTO film exhibits an increase in the dielectric characteristics due to the interfacial polarization. These improved characteristics include a dielectric constant of 194 (a large increment of 111%), along with the dielectric loss of 0.053 (a slight increment of 13%) at 1 kHz, compared to the pure BTO dielectric film. The improvement in the dielectric constant of the rGO@BTO is attributed to the encapsulation degree between the rGO platelets and BTO powder particles, which results in the interfacial polarization and micro-capacitor effect in a dielectric film, and also contributes to a low dielectric loss. Therefore, a suitable size of rGO platelets for encapsulation is essential for high-dielectric performance.
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spelling pubmed-91577402022-06-22 Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide Jun, So-Yeon Park, SeungHun Baek, Nam Wuk Lee, Tae-Young Yoo, Sehoon Jung, Donggeun Kim, Jin-Young RSC Adv Chemistry Ferroelectric barium titanate (BTO) powder particles were encapsulated by three different sizes of reduced graphene oxide (rGO) platelets. The size of the graphene oxide (GO) platelets is controlled by varying the horn type ultrasonic times, i.e. 0, 30, and 60 min, respectively, and they are reduced with hydrazine to obtain rGO-encapsulated BTO (rGO@BTO) film. The rGO@BTO film exhibits an increase in the dielectric characteristics due to the interfacial polarization. These improved characteristics include a dielectric constant of 194 (a large increment of 111%), along with the dielectric loss of 0.053 (a slight increment of 13%) at 1 kHz, compared to the pure BTO dielectric film. The improvement in the dielectric constant of the rGO@BTO is attributed to the encapsulation degree between the rGO platelets and BTO powder particles, which results in the interfacial polarization and micro-capacitor effect in a dielectric film, and also contributes to a low dielectric loss. Therefore, a suitable size of rGO platelets for encapsulation is essential for high-dielectric performance. The Royal Society of Chemistry 2022-06-01 /pmc/articles/PMC9157740/ /pubmed/35747533 http://dx.doi.org/10.1039/d2ra01266a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Jun, So-Yeon
Park, SeungHun
Baek, Nam Wuk
Lee, Tae-Young
Yoo, Sehoon
Jung, Donggeun
Kim, Jin-Young
Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title_full Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title_fullStr Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title_full_unstemmed Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title_short Enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
title_sort enhancement of dielectric performance of encapsulation in barium titanate oxide using size-controlled reduced graphene oxide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9157740/
https://www.ncbi.nlm.nih.gov/pubmed/35747533
http://dx.doi.org/10.1039/d2ra01266a
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