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Study of Proton Conductivity of Composite Metal-Ceramic Materials Based on Neodimium Tugstates Using a Four-Electrode Technique with Ionic Probes Full article

Journal International Journal of Hydrogen Energy
ISSN: 0360-3199 , E-ISSN: 1879-3487
Output data Year: 2018, Volume: 43, Number: 42, Pages: 19521-19527 Pages count : 7 DOI: 10.1016/j.ijhydene.2018.08.190
Tags Hydrogen energy; Solid protonic electrolyte; Metal-ceramic membrane materials for hydrogen separating; 4-Electrode cell with ionic probes; Partial protonic conductivity
Authors Uvarov N.F. 1,2,3 , Ulihin A.S. 1 , Bespalko Yu.N. 4 , Eremeev N.F. 4 , Krasnov A.V. 4 , Skriabin P.I. 4 , Sadykov V.A. 2,4
Affiliations
1 Institute of Solid State Chemistry and Mechanochemistry, SB RAS, Kutateladze Str., 18, Novosibirsk, 630128, Russia
2 Novosibirsk State University, Pirogova Str. 2, Novosibirsk, 630090, Russia
3 Novosibirsk State Technical University, Karl Marx Ave. 20, Novosibirsk, 630073, Russia
4 Boreskov Institute of Catalysis SB RAS, Acad. Lavrentieva Pr. 5, Novosibirsk, 630090, Russia

Funding (2)

1 Federal Agency for Scientific Organizations V.45.3.8.
2 Russian Science Foundation 16-13-00112

Abstract: Ceramic solid proton electrolytes La0.99Ca0.01NbO4, Nd5.5WO11.25- Nd5.5W0.5Mo0.5O11.25-δ were synthesized and their proton conductivity was measured in the temperature range of 300–650 °С in an atmosphere of dry and humid air. It is shown that solid electrolytes have a high proton conductivity ∼10−4 S/cm at 500 °С. Dense metal-ceramic composites containing phases of metal Ni0.5Cu0.5 and oxides Nd5.5WO11.25 or Nd5.5W0.5Mo0.5O11.25-δ with the total conductivity typical of metals were obtained using hot pressing technique an argon atmosphere. An experimental determination of the contribution of the ionic (in this case proton) conductivity to the overall conductivity of the material comprises is an actual problem in investigation of the properties of metal-ceramic materials. The values of proton conductivity can be estimated from the results of studying the hydrogen permeability of membranes and the diffusion of hydrogen, but these methods are rather complicated in instrumentation. Therefore the use of relatively simple and accessible electrical measurement methods to solve this problem is very relevant. In this paper, the partial proton conductivity of the composite materials mentioned above was first measured using a 4-electrode cell with ion probes made of a ceramic proton conductor La0.99Ca0.01NbO4 in an atmosphere of moist hydrogen and at the temperature range of 300–650 °C. In the low-temperature region, the values of the partial proton conductivity measured in the 4-electrode cell are in good agreement with those obtained by standard complex impedance analysis for the pure ceramics not containing metal. At high temperatures, the values obtained by two independent techniques differ. This can be explained by the contribution of the electrochemical reaction proceeding at the interface between the ion probe and the metal phases and accompanied by the dissolution of atomic hydrogen in the metal. In general, the measured value of the ionic conductivity can be either underestimated or overestimated in comparison with the real one, depending on the rate of chemical reactions occurring at the electrodes. Nevertheless, in a limited temperature range, the use of four-electrode measurements with ionic (proton) probes allows one to obtain correct results.
Cite: Uvarov N.F. , Ulihin A.S. , Bespalko Y.N. , Eremeev N.F. , Krasnov A.V. , Skriabin P.I. , Sadykov V.A.
Study of Proton Conductivity of Composite Metal-Ceramic Materials Based on Neodimium Tugstates Using a Four-Electrode Technique with Ionic Probes
International Journal of Hydrogen Energy. 2018. V.43. N42. P.19521-19527. DOI: 10.1016/j.ijhydene.2018.08.190 WOS Scopus РИНЦ AN OpenAlex
Original: Уваров Н.Ф. , Улихин А.С. , Беспалко Ю.Н. , Еремеев Н.Ф. , Краснов А.В. , Скрябин П.И. , Садыков В.А.
Исследование протонной проводимости композитных металлокерамических материалов на основе вольфраматов неодима четырехэлектродным методом с ионными зондами
Международный научный журнал Альтернативная энергетика и экология. 2017. №31-36. С.24-35. DOI: 10.15518/isjaee.2017.31-36.024-035 РИНЦ ANCAN OpenAlex
Dates:
Published online: Sep 21, 2018
Published print: Oct 18, 2018
Identifiers:
Web of science: WOS:000449237200022
Scopus: 2-s2.0-85053759790
Elibrary: 35738845
Chemical Abstracts: 2018:1726098
OpenAlex: W2890145932
Citing:
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Scopus 6
Elibrary 6
Web of science 5
OpenAlex 6
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