Cargando…

Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response

Controlled growth of nanostructures plays a vital role in tuning the physical and chemical properties of functional materials for advanced energy and memory storage devices. Herein, we synthesized hierarchical micro-sized flowers, built by the self-assembly of highly crystalline, two-dimensional nan...

Descripción completa

Detalles Bibliográficos
Autores principales: Abbas, Syed Kumail, Mustafa, Ghulam M., Saleem, Murtaza, Sufyan, Muhammad, Riaz, Saira, Naseem, Shahzad, Atiq, Shahid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7481687/
https://www.ncbi.nlm.nih.gov/pubmed/32968524
http://dx.doi.org/10.1098/rsos.200642
_version_ 1783580657651286016
author Abbas, Syed Kumail
Mustafa, Ghulam M.
Saleem, Murtaza
Sufyan, Muhammad
Riaz, Saira
Naseem, Shahzad
Atiq, Shahid
author_facet Abbas, Syed Kumail
Mustafa, Ghulam M.
Saleem, Murtaza
Sufyan, Muhammad
Riaz, Saira
Naseem, Shahzad
Atiq, Shahid
author_sort Abbas, Syed Kumail
collection PubMed
description Controlled growth of nanostructures plays a vital role in tuning the physical and chemical properties of functional materials for advanced energy and memory storage devices. Herein, we synthesized hierarchical micro-sized flowers, built by the self-assembly of highly crystalline, two-dimensional nanoplates of Co- and Ni-doped BiFeO(3), using a simple ethylene glycol-mediated solvothermal method. Pure BiFeO(3) attained scattered one-dimensional nanorods-type morphology having diameter nearly 60 nm. Co-doping of Co and Ni at Fe-site in BiFeO(3) does not destabilize the morphology; rather it generates three-dimensional floral patterns of self-assembled nanoplates. Unsaturated polarization loops obtained for BiFeO(3) confirmed the leakage behaviour of these rhombohedrally distorted cubic perovskites. These loops were then used to determine the energy density of the BiFeO(3) perovskites. Enhanced ferromagnetic behaviour with high coercivity and remanence was observed for these nanoplates. A detailed discussion about the origin of ferromagnetic behaviour based on Goodenough–Kanamori's rule is also a part of this paper. Impedance spectroscopy revealed a true Warburg capacitive behaviour of the synthesized nanoplates. High magneto-electric (ME) coefficient of 27 mV cm(−1) Oe(−1) at a bias field of −0.2 Oe was observed which confirmed the existence of ME coupling in these nanoplates.
format Online
Article
Text
id pubmed-7481687
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society
record_format MEDLINE/PubMed
spelling pubmed-74816872020-09-22 Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response Abbas, Syed Kumail Mustafa, Ghulam M. Saleem, Murtaza Sufyan, Muhammad Riaz, Saira Naseem, Shahzad Atiq, Shahid R Soc Open Sci Chemistry Controlled growth of nanostructures plays a vital role in tuning the physical and chemical properties of functional materials for advanced energy and memory storage devices. Herein, we synthesized hierarchical micro-sized flowers, built by the self-assembly of highly crystalline, two-dimensional nanoplates of Co- and Ni-doped BiFeO(3), using a simple ethylene glycol-mediated solvothermal method. Pure BiFeO(3) attained scattered one-dimensional nanorods-type morphology having diameter nearly 60 nm. Co-doping of Co and Ni at Fe-site in BiFeO(3) does not destabilize the morphology; rather it generates three-dimensional floral patterns of self-assembled nanoplates. Unsaturated polarization loops obtained for BiFeO(3) confirmed the leakage behaviour of these rhombohedrally distorted cubic perovskites. These loops were then used to determine the energy density of the BiFeO(3) perovskites. Enhanced ferromagnetic behaviour with high coercivity and remanence was observed for these nanoplates. A detailed discussion about the origin of ferromagnetic behaviour based on Goodenough–Kanamori's rule is also a part of this paper. Impedance spectroscopy revealed a true Warburg capacitive behaviour of the synthesized nanoplates. High magneto-electric (ME) coefficient of 27 mV cm(−1) Oe(−1) at a bias field of −0.2 Oe was observed which confirmed the existence of ME coupling in these nanoplates. The Royal Society 2020-08-05 /pmc/articles/PMC7481687/ /pubmed/32968524 http://dx.doi.org/10.1098/rsos.200642 Text en © 2020 The Authors. http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/http://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Chemistry
Abbas, Syed Kumail
Mustafa, Ghulam M.
Saleem, Murtaza
Sufyan, Muhammad
Riaz, Saira
Naseem, Shahzad
Atiq, Shahid
Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title_full Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title_fullStr Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title_full_unstemmed Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title_short Ethylene glycol assisted three-dimensional floral evolution of BiFeO(3)-based nanostructures with effective magneto-electric response
title_sort ethylene glycol assisted three-dimensional floral evolution of bifeo(3)-based nanostructures with effective magneto-electric response
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7481687/
https://www.ncbi.nlm.nih.gov/pubmed/32968524
http://dx.doi.org/10.1098/rsos.200642
work_keys_str_mv AT abbassyedkumail ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT mustafaghulamm ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT saleemmurtaza ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT sufyanmuhammad ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT riazsaira ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT naseemshahzad ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse
AT atiqshahid ethyleneglycolassistedthreedimensionalfloralevolutionofbifeo3basednanostructureswitheffectivemagnetoelectricresponse