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Investigation of Perovskite Structures as Oxygen-Exchange Redox Materials for Hydrogen Production from Thermochemical Two-Step Water-Splitting Cycles
被引:172
作者:
Demont, Antoine
[1
]
Abanades, Stephane
[1
]
Beche, Eric
[1
]
机构:
[1] PROMES CNRS UPR 8521, Pro Mat & Solar Energy Lab, F-66120 Font Romeu, France
关键词:
SOLAR HYDROGEN;
CHEMICAL EXPANSION;
ELECTRICAL-PROPERTIES;
MAGNETIC-PROPERTIES;
CARRIER MATERIALS;
CRYSTAL-STRUCTURE;
SURFACE EXCHANGE;
H-2;
GENERATION;
OXIDES;
BA0.5SR0.5CO0.8FE0.2O3-DELTA;
D O I:
10.1021/jp5034849
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
This study addresses the synthesis, characterization, and thermochemical redox performance evaluation of perovskites and parent structures (Ruddlesden-Popper phases) as a class of oxygen-exchange materials for hydrogen generation via solar two-step water splitting. The investigated materials are LaxSr1-xMO3 (M = Mn, Co, Fe), BaxSr1-x(Co,Fe)O-3, LaSrCoO4, and LaSrFeO4, also used as mixed ionic-electronic conductors in fuel cells. Temperature-programmed reduction, powder X-ray diffraction, and thermogravimetric analysis were used to obtain a preliminary assessment of these materials performances. Most of the perovskites studied here stand out by larger thermal reduction capabilities and oxygen vacancies formation at modest temperatures in the range 1000-1400 degrees C when compared with reference non-stoichiometric compounds such as spinel ferrites or fluorite-structured ceria-based materials. In addition, these materials offer noticeable access to metallic valence transitions during reoxidation in steam atmosphere that are not available in stoichiometric oxides. The promising behaviors characterized here are discussed in regard to the crystal chemistry of the perovskite and parent phases.
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页码:12682 / 12692
页数:11
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