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Undoped SrMMoO Double Perovskite Molybdates (M = Ni, Mg, Fe) As Promising Anode Materials for Solid Oxide Fuel Cells

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Publisher MDPI
Date 2021 Apr 3
PMID 33807360
Citations 10
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Abstract

The chemical design of new functional materials for solid oxide fuel cells (SOFCs) is of great interest as a means for overcoming the disadvantages of traditional materials. Redox stability, carbon deposition and sulfur poisoning of the anodes are positioned as the main processes that result in the degradation of SOFC performance. In this regard, double perovskite molybdates are possible alternatives to conventional Ni-based cermets. The present review provides the fundamental properties of four members: SrNiMoO, SrMgMoO, SrFeMoO and SrFeMoO. These properties vary greatly depending on the type and concentration of the 3d-element occupying the B-position of ABB'O. The main emphasis is devoted to: (i) the synthesis features of undoped double molybdates, (ii) their electrical conductivity and thermal behaviors in both oxidizing and reducing atmospheres, as well as (iii) their chemical compatibility with respect to other functional SOFC materials and components of gas atmospheres. The information provided can serve as the basis for the design of efficient fuel electrodes prepared from complex oxides with layered structures.

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References
1.
Lv H, Lin L, Zhang X, Song Y, Matsumoto H, Zeng C . In Situ Investigation of Reversible Exsolution/Dissolution of CoFe Alloy Nanoparticles in a Co-Doped Sr Fe Mo O Cathode for CO Electrolysis. Adv Mater. 2020; 32(6):e1906193. DOI: 10.1002/adma.201906193. View

2.
Boldrin P, Ruiz-Trejo E, Mermelstein J, Bermudez Menendez J, Rami Rez Reina T, Brandon N . Strategies for Carbon and Sulfur Tolerant Solid Oxide Fuel Cell Materials, Incorporating Lessons from Heterogeneous Catalysis. Chem Rev. 2016; 116(22):13633-13684. DOI: 10.1021/acs.chemrev.6b00284. View

3.
Li J, Wei B, Cao Z, Yue X, Zhang Y, Lu Z . Niobium Doped Lanthanum Strontium Ferrite as A Redox-Stable and Sulfur-Tolerant Anode for Solid Oxide Fuel Cells. ChemSusChem. 2017; 11(1):254-263. DOI: 10.1002/cssc.201701638. View

4.
Tsvetkov D, Ivanov I, Malyshkin D, Steparuk A, Zuev A . The defect structure and chemical lattice strain of the double perovskites Sr2BMoO6-δ (B = Mg, Fe). Dalton Trans. 2016; 45(32):12906-13. DOI: 10.1039/c6dt02513g. View

5.
Sereda V, Tsvetkov D, Sednev A, Druzhinina A, Malyshkin D, Zuev A . Thermodynamics of SrNiMoO and SrCoMoO and their stability under reducing conditions. Phys Chem Chem Phys. 2018; 20(30):20108-20116. DOI: 10.1039/c8cp03782e. View