Projects
Crystal-chemical tuning of order and disorder: a strategy for the discovery of novel solid state ionic conductors (DP110102662)
Local CoordinatorOther International
The ultimate aim of this project is to discover novel ionic conductors suitable for use in energy technologies. By identifying, comprehensively characterising and optimising a number of such materials, this project will provide industry with the opportunity to implement them in new and improved devices.Development of new interstitial oxide-ion conductors for effective oxygen separation and conversion of the hydrocarbons (POCI/CTM/59197/2004)
PartnerFundação para a Ciência e a Tecnologia
mixed ion and electron conductor ionic conductivity oxygen permeability hydrocarbon partial oxidationMixed Conducting Membranes for Partial Oxidation of Natural Gas to Synthesis Gas (NATO - SFP SYNGAS 978002)
PartnerOther International
Novel Ceramic Membranes for Synthesis Gas Production (POCI/CTM/58570/2004)
CoordinatorFundação para a Ciência e a Tecnologia
mixed conductor ceramic membrane synthesis gas ionic transportNovel layered ferrits materials with mixed ionic-electronic conductivity for applications in alternative energy sources (PTDC/CTM/64357/2006)
Local CoordinatorFundação para a Ciência e a Tecnologia
Mixed conductors Ceramic membranes SOFC electrodes Ionic TransportNovel methodological approaches to analyze ion transport mechanism in complex crystal lattices and to forecast performance-determining parameters of the oxide materials (PTDC/CTM-CER/114561/2009)
PartnerFundação para a Ciência e a Tecnologia
ionic transport point defects molecular dynamics Moessbauer spectroscopySelf healing glass-ceramic seals for solid oxide fuel cells: A multi-layered approach (PTDC/CTM-CER/114209/2009)
PartnerFundação para a Ciência e a Tecnologia
glass-ceramic solid oxide fuel cell self-healing sealants crystallizationTransport properties and electrochemical applications of ceria-based nanomaterials (POCTI/CTM/39381/2001)
PartnerFundação para a Ciência e a Tecnologia
Nanomaterials anodes ceria condução mistaPublications
Surface states and stability of Fe-containing perovskite electrodes for SOFCs/SOECs by conversion-electron Mossbauer spectroscopy
Tsipis, EV; Waerenborgh, JC; Kharton, VV
2011, ELECTROCHEMISTRY COMMUNICATIONS, 13, 7, 685-688.
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Transport, thermomechanical, and electrode properties of perovskite-type (La0.75-xSr0.25+x)(0.95)Mn0.5Cr0.5-xTixO3-delta(x=0-0.5)
Kolotygin, VA; Tsipis, EV; Shaula, AL; Naumovich, EN; Frade, JR; Bredikhin, SI; Kharton, VV
2011, JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 15, 2, 313-327.
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B-site substitutions in LaNb1-xMxO(4-delta) materials in the search for potential proton conductors (M=Ga, Ge, Si, B, Ti, Zr, P, Al)
Brandao, AD; Gracio, J; Mather, GC; Kharton, VV; Fagg, DP
2011, JOURNAL OF SOLID STATE CHEMISTRY, 184, 4, 863-870.
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Simulation of a mixed-conducting membrane-based gas turbine power plant for CO2 capture: system level analysis of operation stability and individual process unit degradation
Colombo, KE; Kharton, VV; Viskup, AP; Kovalevsky, AV; Shaula, AL; Bolland, O
2011, JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 15, 2, 329-347.
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Surface analysis of mixed-conducting ferrite membranes by the conversion-electron Mossbauer spectroscopy
Waerenborgh, JC; Tsipis, EV; Yaremchenko, AA; Kharton, VV
2011, JOURNAL OF SOLID STATE CHEMISTRY, 184, 9, 2610-2614.
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Processing and oxygen permeation studies of asymmetric multilayer Ba0.5Sr0.5Co0.8Fe0.2O3-delta membranes
Kovalevsky, AV; Yaremchenko, AA; Kolotygin, VA; Shaula, AL; Kharton, VV; Snijkers, FMM; Buekenhoudt, A; Frade, JR; Naumovich, EN
2011, JOURNAL OF MEMBRANE SCIENCE, 380, 1-2, 68-80.
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Guidelines for improving resistance to CO2 of materials for solid state electrochemical systems
Brandao, A; Monteiro, JF; Kovalevsky, AV; Fagg, DP; Kharton, VV; Frade, JR
2011, SOLID STATE IONICS, 192, 1, 16-20.
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Oxygen deficiency, vacancy clustering and ionic transport in (La,Sr)CoO3-delta
Tsipis, EV; Naumovich, EN; Patrakeev, MV; Yaremchenko, AA; Marozau, IP; Kovalevsky, AV; Waerenborgh, JC; Kharton, VV
2011, SOLID STATE IONICS, 192, 1, 42-48.
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Stability, oxygen permeability and chemical expansion of Sr(Fe,Al)O3-delta- and Sr(Co,Fe)O3-delta-based membranes
Yaremchenko, AA; Tsipis, EV; Kovalevsky, AV; Waerenborgh, JC; Kharton, VV
2011, SOLID STATE IONICS, 192, 1, 259-268.
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Oxygen permeability and stability of asymmetric multilayer Ba0.5Sr0.5Co0.8Fe0.2O3-delta ceramic membranes
Kovalevsky, AV; Yaremchenko, AA; Kolotygin, VA; Snijkers, FMM; Kharton, VV; Buekenhoudt, A; Luyten, JJ
2011, SOLID STATE IONICS, 192, 1, 677-681.
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Electrochemical Dictionary - 2nd Edition

Abrantes LM, Amir N, Aoki K, et al.
2012, New York, Springer.
ISBN:
978-3-642-29551-5
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Solid State Electrochemistry II - Electrodes, Interfaces and Ceramic Membranes

Vladislav V. Kharton
2011, Weinheim, Wiley.
ISBN:
978-3-527-32638-9
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Solid State Electrochemistry I: Fundamentals, Materials and their Applications

Vladislav V. Kharton
2009, Weinheim, Wiley.
ISBN:
978-3-527-32318-0
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Electrochemical Dictionary

L.M. Abrantes, N. Amir, K. Aoki, D. Aurbach, et al.
2008, Springer.
ISBN:
978-3-540-74597-6
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Electrodes for high-temperature electrochemical cells: novel materials and recent trends

Solid State Electrochemistry II: Electrodes, Interfaces and Ceramic Membranes
Tsipis EV, Kharton VV
2011, Weinheim, Wiley-VCH.
ISBN:
978-3-527-32638-9
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Oxygen ion-conducting materials.

In Kharton VV (Eds.), Solid State Electrochemistry I: Fundamentals, Materials and their Applications
Kharton VV, Marques FMB, Kilner JA, Atkinson A
2009, 301-334, Weinheim, Germany, Wiley-VCH.
ISBN:
978-3-527-32318-0
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Electrochemical Dictionary - 2nd Edition

Abrantes LM, Amir N, Aoki K, et al.
2012, New York, Springer.
ISBN:
978-3-642-29551-5
>
Solid State Electrochemistry II - Electrodes, Interfaces and Ceramic Membranes

Vladislav V. Kharton
2011, Weinheim, Wiley.
ISBN:
978-3-527-32638-9
>
Solid State Electrochemistry I: Fundamentals, Materials and their Applications

Vladislav V. Kharton
2009, Weinheim, Wiley.
ISBN:
978-3-527-32318-0
>
Electrochemical Dictionary

L.M. Abrantes, N. Amir, K. Aoki, D. Aurbach, et al.
2008, Springer.
ISBN:
978-3-540-74597-6
>