Journal article 380 views 277 downloads
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices
Journal of Materials Research and Technology, Volume: 18, Pages: 3386 - 3395
Swansea University Author: Charlie Dunnill
-
PDF | Version of Record
This is an open access article under the CC BY-NC-ND license.
Download (1.55MB)
DOI (Published version): 10.1016/j.jmrt.2022.03.113
Abstract
Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffractometer (XRD) has been employed to confirm the crystal structure of spinel ferrites. No impurity peaks are detected in XRD graph, which confirms single phase crystal structure. The evaluation of grain...
Published in: | Journal of Materials Research and Technology |
---|---|
ISSN: | 2238-7854 |
Published: |
Elsevier BV
2022
|
Online Access: |
Check full text
|
URI: | https://cronfa.swan.ac.uk/Record/cronfa60974 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
first_indexed |
2022-09-14T15:21:52Z |
---|---|
last_indexed |
2023-01-13T19:21:30Z |
id |
cronfa60974 |
recordtype |
SURis |
fullrecord |
<?xml version="1.0"?><rfc1807><datestamp>2022-09-14T16:44:03.8468050</datestamp><bib-version>v2</bib-version><id>60974</id><entry>2022-08-30</entry><title>Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices</title><swanseaauthors><author><sid>0c4af8958eda0d2e914a5edc3210cd9e</sid><ORCID>0000-0003-4052-6931</ORCID><firstname>Charlie</firstname><surname>Dunnill</surname><name>Charlie Dunnill</name><active>true</active><ethesisStudent>false</ethesisStudent></author></swanseaauthors><date>2022-08-30</date><deptcode>CHEG</deptcode><abstract>Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffractometer (XRD) has been employed to confirm the crystal structure of spinel ferrites. No impurity peaks are detected in XRD graph, which confirms single phase crystal structure. The evaluation of grain size and analysis of external surface morphology of synthesized lithium ferrites has been done by scanning electron microscope (SEM). Average grain size was about equal to 131 nm. Energy dispersive x-ray spectra showed all the elements were present in required proportions. Magnetic characteristics such as saturation magnetization (Ms), remanence (Mr), and coercive force (Hc) have been measured from MH loops. Saturation magnetization has been measured to be 43.69 emu/by law of approach to saturation. The coercivity value lies in the range of few hundred Oersted which is vital condition for electromagnetic materials. Cyclic Voltammetry (CV) measurements were made, to know about the electrochemical performance of the material. CV results show that with the increase in scan rate specific capacitance decreases and the area of the loop increases which is promising for the formation of super capacitors and lithium-ion batteries (LIB's).</abstract><type>Journal Article</type><journal>Journal of Materials Research and Technology</journal><volume>18</volume><journalNumber/><paginationStart>3386</paginationStart><paginationEnd>3395</paginationEnd><publisher>Elsevier BV</publisher><placeOfPublication/><isbnPrint/><isbnElectronic/><issnPrint>2238-7854</issnPrint><issnElectronic/><keywords>Lithium-ion batteries; Lithium ferrites; Structural parameter; Magnetic properties; CV measurements</keywords><publishedDay>1</publishedDay><publishedMonth>5</publishedMonth><publishedYear>2022</publishedYear><publishedDate>2022-05-01</publishedDate><doi>10.1016/j.jmrt.2022.03.113</doi><url/><notes/><college>COLLEGE NANME</college><department>Chemical Engineering</department><CollegeCode>COLLEGE CODE</CollegeCode><DepartmentCode>CHEG</DepartmentCode><institution>Swansea University</institution><apcterm/><funders>The authors would like to acknowledge Researcher's Supporting Project Number (RSP2022R511), King Saud University, Riyadh, Saudi Arabia.</funders><projectreference/><lastEdited>2022-09-14T16:44:03.8468050</lastEdited><Created>2022-08-30T11:43:05.8406669</Created><path><level id="1">Faculty of Science and Engineering</level><level id="2">School of Engineering and Applied Sciences - Chemical Engineering</level></path><authors><author><firstname>Mukhtar</firstname><surname>Ahmad</surname><order>1</order></author><author><firstname>Muhammad</firstname><surname>Shahid</surname><order>2</order></author><author><firstname>Yousef Mohammed</firstname><surname>Alanazi</surname><orcid>0000-0001-9844-5240</orcid><order>3</order></author><author><firstname>Atiq ur</firstname><surname>Rehman</surname><orcid>0000-0001-9530-4549</orcid><order>4</order></author><author><firstname>Muahmmad</firstname><surname>Asif</surname><orcid>0000-0001-7324-4493</orcid><order>5</order></author><author><firstname>Charlie</firstname><surname>Dunnill</surname><orcid>0000-0003-4052-6931</orcid><order>6</order></author></authors><documents><document><filename>60974__25142__32c1aad44d3f444496ad8b5526ed2a42.pdf</filename><originalFilename>60974_VoR.pdf</originalFilename><uploaded>2022-09-14T16:42:50.4186523</uploaded><type>Output</type><contentLength>1626070</contentLength><contentType>application/pdf</contentType><version>Version of Record</version><cronfaStatus>true</cronfaStatus><documentNotes>This is an open access article under the CC BY-NC-ND license.</documentNotes><copyrightCorrect>true</copyrightCorrect><language>eng</language><licence>http://creativecommons.org/licenses/by-nc-nd/4.0/</licence></document></documents><OutputDurs/></rfc1807> |
spelling |
2022-09-14T16:44:03.8468050 v2 60974 2022-08-30 Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices 0c4af8958eda0d2e914a5edc3210cd9e 0000-0003-4052-6931 Charlie Dunnill Charlie Dunnill true false 2022-08-30 CHEG Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffractometer (XRD) has been employed to confirm the crystal structure of spinel ferrites. No impurity peaks are detected in XRD graph, which confirms single phase crystal structure. The evaluation of grain size and analysis of external surface morphology of synthesized lithium ferrites has been done by scanning electron microscope (SEM). Average grain size was about equal to 131 nm. Energy dispersive x-ray spectra showed all the elements were present in required proportions. Magnetic characteristics such as saturation magnetization (Ms), remanence (Mr), and coercive force (Hc) have been measured from MH loops. Saturation magnetization has been measured to be 43.69 emu/by law of approach to saturation. The coercivity value lies in the range of few hundred Oersted which is vital condition for electromagnetic materials. Cyclic Voltammetry (CV) measurements were made, to know about the electrochemical performance of the material. CV results show that with the increase in scan rate specific capacitance decreases and the area of the loop increases which is promising for the formation of super capacitors and lithium-ion batteries (LIB's). Journal Article Journal of Materials Research and Technology 18 3386 3395 Elsevier BV 2238-7854 Lithium-ion batteries; Lithium ferrites; Structural parameter; Magnetic properties; CV measurements 1 5 2022 2022-05-01 10.1016/j.jmrt.2022.03.113 COLLEGE NANME Chemical Engineering COLLEGE CODE CHEG Swansea University The authors would like to acknowledge Researcher's Supporting Project Number (RSP2022R511), King Saud University, Riyadh, Saudi Arabia. 2022-09-14T16:44:03.8468050 2022-08-30T11:43:05.8406669 Faculty of Science and Engineering School of Engineering and Applied Sciences - Chemical Engineering Mukhtar Ahmad 1 Muhammad Shahid 2 Yousef Mohammed Alanazi 0000-0001-9844-5240 3 Atiq ur Rehman 0000-0001-9530-4549 4 Muahmmad Asif 0000-0001-7324-4493 5 Charlie Dunnill 0000-0003-4052-6931 6 60974__25142__32c1aad44d3f444496ad8b5526ed2a42.pdf 60974_VoR.pdf 2022-09-14T16:42:50.4186523 Output 1626070 application/pdf Version of Record true This is an open access article under the CC BY-NC-ND license. true eng http://creativecommons.org/licenses/by-nc-nd/4.0/ |
title |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
spellingShingle |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices Charlie Dunnill |
title_short |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
title_full |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
title_fullStr |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
title_full_unstemmed |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
title_sort |
Lithium ferrite (Li0.5Fe2.5O4): synthesis, structural, morphological and magnetic evaluation for storage devices |
author_id_str_mv |
0c4af8958eda0d2e914a5edc3210cd9e |
author_id_fullname_str_mv |
0c4af8958eda0d2e914a5edc3210cd9e_***_Charlie Dunnill |
author |
Charlie Dunnill |
author2 |
Mukhtar Ahmad Muhammad Shahid Yousef Mohammed Alanazi Atiq ur Rehman Muahmmad Asif Charlie Dunnill |
format |
Journal article |
container_title |
Journal of Materials Research and Technology |
container_volume |
18 |
container_start_page |
3386 |
publishDate |
2022 |
institution |
Swansea University |
issn |
2238-7854 |
doi_str_mv |
10.1016/j.jmrt.2022.03.113 |
publisher |
Elsevier BV |
college_str |
Faculty of Science and Engineering |
hierarchytype |
|
hierarchy_top_id |
facultyofscienceandengineering |
hierarchy_top_title |
Faculty of Science and Engineering |
hierarchy_parent_id |
facultyofscienceandengineering |
hierarchy_parent_title |
Faculty of Science and Engineering |
department_str |
School of Engineering and Applied Sciences - Chemical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Chemical Engineering |
document_store_str |
1 |
active_str |
0 |
description |
Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffractometer (XRD) has been employed to confirm the crystal structure of spinel ferrites. No impurity peaks are detected in XRD graph, which confirms single phase crystal structure. The evaluation of grain size and analysis of external surface morphology of synthesized lithium ferrites has been done by scanning electron microscope (SEM). Average grain size was about equal to 131 nm. Energy dispersive x-ray spectra showed all the elements were present in required proportions. Magnetic characteristics such as saturation magnetization (Ms), remanence (Mr), and coercive force (Hc) have been measured from MH loops. Saturation magnetization has been measured to be 43.69 emu/by law of approach to saturation. The coercivity value lies in the range of few hundred Oersted which is vital condition for electromagnetic materials. Cyclic Voltammetry (CV) measurements were made, to know about the electrochemical performance of the material. CV results show that with the increase in scan rate specific capacitance decreases and the area of the loop increases which is promising for the formation of super capacitors and lithium-ion batteries (LIB's). |
published_date |
2022-05-01T04:19:31Z |
_version_ |
1763754295356817408 |
score |
11.036006 |