Evaluation of electrical conductivity of Fe-doped forsterite ceramics synthetized by sol–gel method

This work aims to investigate the effect of sintering temperature and iron doping on the electrical conductivity of forsterite in the temperature range of 300–400 °C. For this purpose, olivine compositions (Mg 2- x Fe x SiO 4 ; x  = 0, 0.05 and 0.1) were synthetized by sol-gel process and then chara...

Full description

Saved in:
Bibliographic Details
Published inEuropean physical journal. Applied physics Vol. 97; p. 61
Main Authors El Asri, Saloua, El Hadri, Mohammed, Ahamdane, Hamid, Hajji, Lahoucine, Ounacer, Mohamed, Sajieddine, Mohammed, El Idrissi Raghni, Moulay Ahmed, Mansori, Mohammed
Format Journal Article
LanguageEnglish
Published 21.09.2022
Online AccessGet full text
ISSN1286-0042
1286-0050
DOI10.1051/epjap/2022220035

Cover

Loading…
Abstract This work aims to investigate the effect of sintering temperature and iron doping on the electrical conductivity of forsterite in the temperature range of 300–400 °C. For this purpose, olivine compositions (Mg 2- x Fe x SiO 4 ; x  = 0, 0.05 and 0.1) were synthetized by sol-gel process and then characterized by different techniques. The obtained results indicate the successful formation of dense single phase olivine ceramics. It was also found that Fe inserted in forsterite lattice has both Fe (II) and Fe (III) oxidation states. Regarding the electrical conductivity, it turned out to be more sensitive to both investigation parameters, in contrast with the activation energy characterizing the diffusion of carriers charge responsible of electrical conductivity. The prepared samples were characterized by: XRD, SEM techniques and Raman, Mössbauer and impedance spectroscopies.
AbstractList This work aims to investigate the effect of sintering temperature and iron doping on the electrical conductivity of forsterite in the temperature range of 300–400 °C. For this purpose, olivine compositions (Mg 2- x Fe x SiO 4 ; x  = 0, 0.05 and 0.1) were synthetized by sol-gel process and then characterized by different techniques. The obtained results indicate the successful formation of dense single phase olivine ceramics. It was also found that Fe inserted in forsterite lattice has both Fe (II) and Fe (III) oxidation states. Regarding the electrical conductivity, it turned out to be more sensitive to both investigation parameters, in contrast with the activation energy characterizing the diffusion of carriers charge responsible of electrical conductivity. The prepared samples were characterized by: XRD, SEM techniques and Raman, Mössbauer and impedance spectroscopies.
Author El Idrissi Raghni, Moulay Ahmed
Ahamdane, Hamid
Mansori, Mohammed
El Asri, Saloua
El Hadri, Mohammed
Sajieddine, Mohammed
Ounacer, Mohamed
Hajji, Lahoucine
Author_xml – sequence: 1
  givenname: Saloua
  surname: El Asri
  fullname: El Asri, Saloua
– sequence: 2
  givenname: Mohammed
  surname: El Hadri
  fullname: El Hadri, Mohammed
– sequence: 3
  givenname: Hamid
  surname: Ahamdane
  fullname: Ahamdane, Hamid
– sequence: 4
  givenname: Lahoucine
  surname: Hajji
  fullname: Hajji, Lahoucine
– sequence: 5
  givenname: Mohamed
  surname: Ounacer
  fullname: Ounacer, Mohamed
– sequence: 6
  givenname: Mohammed
  surname: Sajieddine
  fullname: Sajieddine, Mohammed
– sequence: 7
  givenname: Moulay Ahmed
  surname: El Idrissi Raghni
  fullname: El Idrissi Raghni, Moulay Ahmed
– sequence: 8
  givenname: Mohammed
  surname: Mansori
  fullname: Mansori, Mohammed
BookMark eNp1kMFKAzEQhoNUsK3ePeYF1k6ym-z2KKVVoeBFz0s2mbUp282SpIX15Dv4hj6J2yoKgnP5B36-YfgmZNS6Fgm5ZnDDQLAZdlvVzTjwYQBScUbGjBcyARAw-tkzfkEmIWwBgMlCjAkuD6rZq2hdS11NsUEdvdWqodq1Zq-jPdjYH6sVJsZ1aGjtfIjobUSq0aud1YGGvo0bjPZ16KueBtd8vL2_YEN3GDfOXJLzWjUBr75zSp5Xy6fFfbJ-vHtY3K4TzfI0JgqyymTzTDFthr81FPNa5rUEXUgmDa_SeSFEkUtRpVLkgJwLk_OqqESaQl2nUwJfd7V3IXisy87bnfJ9yaA8aipPmspfTQMi_yDaxpOP6JVt_gc_AQh5ceo
CitedBy_id crossref_primary_10_1051_epjap_2022220292
Cites_doi 10.1111/j.1551-2916.2005.00205.x
10.2465/jmps.071015
10.1038/nature05256
10.1029/2003JB002799
10.1029/2010JB007801
10.2138/am.2009.3115
10.20964/2018.04.10
10.1016/j.ceramint.2014.10.025
10.1007/s00269-009-0321-3
10.1007/s10947-007-0009-9
10.1016/j.jeurceramsoc.2004.09.029
10.1080/01411594.2017.1309403
10.1016/0031-9201(80)90005-9
10.1007/s00269-007-0158-6
10.1016/0012-821X(74)90055-7
10.3390/ma13020408
10.2138/am-2000-8-905
10.1016/j.materresbull.2006.07.020
10.1016/j.pepi.2008.04.001
10.1051/epjap/2020200161
10.1016/j.jpowsour.2009.01.074
10.1016/j.jeurceramsoc.2014.09.024
10.1016/0031-9201(89)90118-0
10.1016/j.bsecv.2017.10.004
10.1111/j.1365-246X.1993.tb01464.x
10.1029/2011JB008774
10.1016/j.jallcom.2004.08.015
10.1021/cm051433+
10.3390/min9010044
10.1007/s00269-003-0370-y
10.1016/j.ceramint.2016.02.075
10.1023/A:1022588500878
10.1016/j.jallcom.2010.01.097
10.1016/j.gca.2006.07.035
10.1016/j.jeurceramsoc.2019.08.003
ContentType Journal Article
DBID AAYXX
CITATION
DOI 10.1051/epjap/2022220035
DatabaseName CrossRef
DatabaseTitle CrossRef
DatabaseTitleList CrossRef
DeliveryMethod fulltext_linktorsrc
Discipline Engineering
Physics
EISSN 1286-0050
ExternalDocumentID 10_1051_epjap_2022220035
GroupedDBID -E.
.4S
.DC
.FH
0E1
123
4.4
5VS
74X
74Y
7~V
8FE
8FG
AAOGA
AAOTM
AAYXX
ABGDZ
ABGRX
ABJNI
ABKKG
ABNSH
ABUBZ
ABZDU
ACACO
ACGFS
ACIMK
ACQPF
ACRPL
ADMLS
ADNMO
AEMTW
AFUTZ
AGQPQ
AI.
AJPFC
ALMA_UNASSIGNED_HOLDINGS
ARABE
ARCSS
AZPVJ
C0O
CITATION
DC4
EBS
EJD
HG-
HST
HZ~
I.6
IL9
I~P
J36
J38
J3A
L98
M-V
O9-
P62
RCA
RED
RR0
S6-
TUS
VH1
WQ3
WXU
ZE2
ID FETCH-LOGICAL-c173t-a04bd494a1cd005c089f67f60c8616d2b398558765b36570e225d72b8b5330ff3
ISSN 1286-0042
IngestDate Thu Apr 24 23:04:14 EDT 2025
Tue Jul 01 02:08:48 EDT 2025
IsPeerReviewed true
IsScholarly true
Language English
License https://www.edpsciences.org/en/authors/copyright-and-licensing
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-c173t-a04bd494a1cd005c089f67f60c8616d2b398558765b36570e225d72b8b5330ff3
ParticipantIDs crossref_primary_10_1051_epjap_2022220035
crossref_citationtrail_10_1051_epjap_2022220035
ProviderPackageCode CITATION
AAYXX
PublicationCentury 2000
PublicationDate 2022-09-21
PublicationDateYYYYMMDD 2022-09-21
PublicationDate_xml – month: 09
  year: 2022
  text: 2022-09-21
  day: 21
PublicationDecade 2020
PublicationTitle European physical journal. Applied physics
PublicationYear 2022
References Swierczyński (R26) 2006; 18
Jugović (R9) 2009; 190
Dai (R1) 2020; 13
Mouri (R22) 2008; 103
Zeira (R28) 1974; 21
Dai (R10) 2019; 9
Mathur (R8) 2018; 57
Chen (R7) 2015; 41
Kuebler (R25) 2006; 70
El (R2) 2015; 35
Aziz (R30) 2018; 13
Dohmen (R34) 2007; 34
El (R24) 2019; 39
Gaisler (R23) 2007; 48
Omura (R15) 1989; 57
Dyar (R12) 2009; 94
Karbovnyk (R3) 2016; 42
Kolesov (R21) 2004; 31
Walker (R14) 2009; 172
Farla (R19) 2010; 37
Sanosh (R6) 2010; 495
Georges (R31) 2005; 25
Richmond (R29) 2000; 85
Lu (R32) 2005; 88
Hirsch (R18) 1993; 114
Barcova (R27) 2003; 255
Wang (R13) 2006; 443
Selmi (R33) 2017; 90
R11
Abelard (R35) 1980; 23
Kosanović (R4) 2005; 389
R16
R17
Asri (R20) 2020; 92
Saberi (R5) 2007; 42
References_xml – volume: 88
  start-page: 1050
  year: 2005
  ident: R32
  publication-title: J. Am. Ceram. Soc
  doi: 10.1111/j.1551-2916.2005.00205.x
– volume: 103
  start-page: 100
  year: 2008
  ident: R22
  publication-title: J. Mineral. Petrol. Sci
  doi: 10.2465/jmps.071015
– volume: 443
  start-page: 977
  year: 2006
  ident: R13
  publication-title: Nature
  doi: 10.1038/nature05256
– ident: R16
  doi: 10.1029/2003JB002799
– ident: R17
  doi: 10.1029/2010JB007801
– volume: 94
  start-page: 883
  year: 2009
  ident: R12
  publication-title: Am. Mineral
  doi: 10.2138/am.2009.3115
– volume: 13
  start-page: 3812
  year: 2018
  ident: R30
  publication-title: Int. J. Electrochem. Sci
  doi: 10.20964/2018.04.10
– volume: 41
  start-page: 2234
  year: 2015
  ident: R7
  publication-title: Ceram. Int
  doi: 10.1016/j.ceramint.2014.10.025
– volume: 37
  start-page: 167
  year: 2010
  ident: R19
  publication-title: Phys. Chem. Miner
  doi: 10.1007/s00269-009-0321-3
– volume: 48
  start-page: 61
  year: 2007
  ident: R23
  publication-title: J. Struct. Chem
  doi: 10.1007/s10947-007-0009-9
– volume: 25
  start-page: 3619
  year: 2005
  ident: R31
  publication-title: J. Eur. Ceram. Soc
  doi: 10.1016/j.jeurceramsoc.2004.09.029
– volume: 90
  start-page: 942
  year: 2017
  ident: R33
  publication-title: Phase Transitions
  doi: 10.1080/01411594.2017.1309403
– volume: 23
  start-page: 98
  year: 1980
  ident: R35
  publication-title: Phys. Earth Planet. Inter
  doi: 10.1016/0031-9201(80)90005-9
– volume: 34
  start-page: 409
  year: 2007
  ident: R34
  publication-title: Phys. Chem. Miner
  doi: 10.1007/s00269-007-0158-6
– volume: 21
  start-page: 201
  year: 1974
  ident: R28
  publication-title: Earth Planet. Sci. Lett
  doi: 10.1016/0012-821X(74)90055-7
– volume: 13
  start-page: 408
  year: 2020
  ident: R1
  publication-title: Materials
  doi: 10.3390/ma13020408
– volume: 85
  start-page: 1155
  year: 2000
  ident: R29
  publication-title: Am. Mineral
  doi: 10.2138/am-2000-8-905
– volume: 42
  start-page: 666
  year: 2007
  ident: R5
  publication-title: Mater. Res. Bull
  doi: 10.1016/j.materresbull.2006.07.020
– volume: 172
  start-page: 20
  year: 2009
  ident: R14
  publication-title: Phys. Earth Planet. Inter
  doi: 10.1016/j.pepi.2008.04.001
– volume: 92
  start-page: 10901
  year: 2020
  ident: R20
  publication-title: Eur. Phys. J. Appl. Phys
  doi: 10.1051/epjap/2020200161
– volume: 190
  start-page: 538
  year: 2009
  ident: R9
  publication-title: J. Power Sources
  doi: 10.1016/j.jpowsour.2009.01.074
– volume: 35
  start-page: 765
  year: 2015
  ident: R2
  publication-title: J. Eur. Ceram. Soc
  doi: 10.1016/j.jeurceramsoc.2014.09.024
– volume: 57
  start-page: 291
  year: 1989
  ident: R15
  publication-title: Phys. Earth Planet. Inter
  doi: 10.1016/0031-9201(89)90118-0
– volume: 57
  start-page: 112
  year: 2018
  ident: R8
  publication-title: Bol. Soc. Esp. Cerámica Vidr
  doi: 10.1016/j.bsecv.2017.10.004
– volume: 114
  start-page: 36
  year: 1993
  ident: R18
  publication-title: Geophys. J. Int
  doi: 10.1111/j.1365-246X.1993.tb01464.x
– ident: R11
  doi: 10.1029/2011JB008774
– volume: 389
  start-page: 306
  year: 2005
  ident: R4
  publication-title: J. Alloys Compd
  doi: 10.1016/j.jallcom.2004.08.015
– volume: 18
  start-page: 897
  year: 2006
  ident: R26
  publication-title: Chem. Mater
  doi: 10.1021/cm051433+
– volume: 9
  start-page: 44
  year: 2019
  ident: R10
  publication-title: Minerals
  doi: 10.3390/min9010044
– volume: 31
  start-page: 142
  year: 2004
  ident: R21
  publication-title: Phys. Chem. Miner
  doi: 10.1007/s00269-003-0370-y
– volume: 42
  start-page: 8501
  year: 2016
  ident: R3
  publication-title: Ceram. Int
  doi: 10.1016/j.ceramint.2016.02.075
– volume: 255
  start-page: 529
  year: 2003
  ident: R27
  publication-title: J. Radioanal. Nucl. Chem
  doi: 10.1023/A:1022588500878
– volume: 495
  start-page: 113
  year: 2010
  ident: R6
  publication-title: J. Alloys Compd
  doi: 10.1016/j.jallcom.2010.01.097
– volume: 70
  start-page: 6201
  year: 2006
  ident: R25
  publication-title: Geochim. Cosmochim. Acta
  doi: 10.1016/j.gca.2006.07.035
– volume: 39
  start-page: 5442
  year: 2019
  ident: R24
  publication-title: J. Eur. Ceram. Soc
  doi: 10.1016/j.jeurceramsoc.2019.08.003
SSID ssj0001685
Score 2.2928693
Snippet This work aims to investigate the effect of sintering temperature and iron doping on the electrical conductivity of forsterite in the temperature range of...
SourceID crossref
SourceType Enrichment Source
Index Database
StartPage 61
Title Evaluation of electrical conductivity of Fe-doped forsterite ceramics synthetized by sol–gel method
Volume 97
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1Lb9QwELaWrZDggKCAKC_5wAUhd_N0kmMFrVaIRUhtpd5WdmxTVqtNVLIHeuI_cObP8UuYiR07glaiXKLdODtydj7NfLbnQcgrnaa6klnJeCQEAw9RsdIYyWRiqgJPxkSF-c6Lj3x-mr0_y88mk5-jqKVtJ_fryyvzSv5Hq3AP9IpZsjfQrBcKN-Az6BeuoGG4_pOOD32pbuR8tqONq_ixwTqutjEEDB1pppoWuCVQVKyMADzzTa0vsBf9VyxaACyw-3JpyShMeYiASD_rtesxfeUOfjso2c1235NaOxL4OuLA5rQfi3WzFaMBsH12ZNGc4za68hiEr8qF4s5hqipYy9XKJXWfN1sfGeD2LmDZi8c58cjcJiVnaDesNxrfs-VoBxttY3idkbXV2_-y_WBeEAXtSrSY5oIr2b7ca_B0w-n-Hw7QhyX2B_J5vOxlLIOEW2QngVVIMiU7B-8WH469q4953_PVv4Y7BwcZs17GLMgY8Z4RgTm5T-65lQc9sDB6QCZ6s0vujupR7pLbn6zaHhIdoEUbQwO06BhaODRAiwZo0QFadAQtKr9RgNav7z8AVNSC6hE5PTo8eTtnriMHq-Mi7ZiIMqmyKhNxrUBFdVRWhheGR3XJY64SmVZlnoODzWWKMVUavIUqEllKDGI2Jn1Mpptmo58QqoEyZbLmmqdFJoQqowRW3mBPVJaaQvE9Mhv-r2XtytVj15T18jot7ZHX_hetLdVy7bNPb_DsM3InYPc5mXYXW_0CmGgnXzo8_AY_pIve
linkProvider EBSCOhost
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Evaluation+of+electrical+conductivity+of+Fe-doped+forsterite+ceramics+synthetized+by+sol%E2%80%93gel+method&rft.jtitle=European+physical+journal.+Applied+physics&rft.au=El+Asri%2C+Saloua&rft.au=El+Hadri%2C+Mohammed&rft.au=Ahamdane%2C+Hamid&rft.au=Hajji%2C+Lahoucine&rft.date=2022-09-21&rft.issn=1286-0042&rft.eissn=1286-0050&rft.volume=97&rft.spage=61&rft_id=info:doi/10.1051%2Fepjap%2F2022220035&rft.externalDBID=n%2Fa&rft.externalDocID=10_1051_epjap_2022220035
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1286-0042&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1286-0042&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1286-0042&client=summon