Biblio

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Artini C, Pani M, Lausi A, Masini R, Costa GA.  0.  High Temperature Structural Study of Gd-Doped Ceria by Synchrotron X-ray Diffraction (673 K ≤ T ≤ 1073 K). Inorganic Chemistry. 53(19):10140-10149.
Artini C, Pani M, Carnasciali MMaddalena, Buscaglia MTeresa, Plaisier JRikkert, Costa GAndrea.  0.  Structural Features of Sm- and Gd-Doped Ceria Studied by Synchrotron X-ray Diffraction and μ-Raman Spectroscopy. Inorganic Chemistry. 54(8):4126-4137.
Artini C., Carnasciali M.M, Viviani M., Presto S., Plaisier J.R, Costa G.A, Pani M..  0.  Structural properties of Sm-doped ceria electrolytes at the fuel cell operating temperatures. Solid State Ionics. 315:85-91.
Arifin D, Aston VJ, Liang X, McDaniel AH, Weimer AW.  2012.  CoFe2O4 on a Porous Al2O3 Nanostructure for Solar Thermochemical CO2 Splitting. Energy & Environmental Science. 5(11):9438-9444.
Antunes RA, Oliveira MCristina L, Ett G, Ett V.  2010.  Corrosion of metal bipolar plates for PEM fuel cells: A review. International Journal of Hydrogen Energy. 35(8):3632-3647.
Ambrosini A, Stechel EB, Coker ENicholas, Miller JE, Ohlhausen JAnthony, Rodriguez MA.  2011.  Synthesis and characterization of oxide materials for thermochemical CO2 splitting using concentrated solar energy..
Ambrosini A, Coker EN, Rodriguez MA, Livers S, Evans LR, Miller JE, Stechel EB.  2010.  Synthesis and characterization of ferrite materials for thermochemical CO2 splitting using concentrated solar energy. :1–13.
Allendorf MD, Miller JE, McDaniel AH.  2013.  Design of Materials for Solar-Driven Fuel Production by Metal-Oxide Thermochemical Cycles. Electrochemical Society Interface. 22(4):63-68.
Allendorf MD, Diver RB, Miller JE, Siegel NP.  2006.  Thermodynamic Analysis of Mixed-Metal Ferrites for Hydrogen Production by Two-Step Water Splitting. 2006:285-290.
Allendorf MD, Diver RB, Siegel NP, Miller JE.  0.  Two-step water splitting using mixed-metal ferrites: Thermodynamic analysis and characterization of synthesized materials. Energy & Fuels. 22(6):4115-4124.
Allen KM, Auyeung N, Rahmatian N, Klausner JF, Coker EN.  2013.  Cobalt Ferrite in YSZ for Use as Reactive Material in Solar Thermochemical Water and Carbon Dioxide Splitting, Part II: Kinetic Modeling. JOM.
Alia SM, Anderson GC.  2019.  Iridium Oxygen Evolution Activity and Durability Baselines in Rotating Disk Electrode Half-Cells. Journal of The Electrochemical Society. 166(4):F282-F294.
Alia SM, Pivovar BS.  2018.  Evaluating Hydrogen Evolution and Oxidation in Alkaline Media to Establish Baselines. Journal of The Electrochemical Society. 165(7):F441-F455.
Al-Shankiti I., Al-Otaibi F., Al-Salik Y., Idriss H..  0.  Solar Thermal Hydrogen Production from Water over Modified CeO2 Materials. Topics in Catalysis. 56(12):1129-1138.
Agrafiotis C, Roeb M, Sattler C.  2015.  A review on solar thermal syngas production via redox pair-based water/carbon dioxide splitting thermochemical cycles. Renewable and Sustainable Energy Reviews. 42:254-285.
Agrafiotis C., Roeb M., Konstandopoulos A.G., Nalbandian L., Zaspalis V.T., Sattler C., Stobbe P., Steele A.M..  0.  Solar water splitting for hydrogen production with monolithic reactors. Solar Energy. 79(4):409-421.
Ackermann S, Sauvin L, Castiglioni R, Rupp JLM, Scheffe JR, Steinfeld A.  0.  Kinetics of CO2 reduction over nonstoichiometric ceria. The Journal of Physical Chemistry C. 119(29):16452-16461.
Abanades S, Villafan-Vidales I.  2012.  CO2 valorisation based on Fe3O4/FeO thermochemical redox reactions using concentrated solar energy. International Journal of Energy Research. :n/a-n/a.
Abanades S, Charvin P, Flamant G, Neveu P.  0.  Screening of water-splitting thermochemical cycles potentially attractive for hydrogen production by concentrated solar energy. Energy. 31(14):2805-2822.
Abanades S, Flamant G.  0.  Thermochemical hydrogen production from a two-step solar-driven water-splitting cycle based on cerium oxides. Solar Energy. 80(12):1611-1623.
Abanades S., Legal A., Cordier A., Peraudeau G., Flamant G., Julbe A..  2010.  Investigation of Reactive Cerium-Based Oxides for H2 Production by Thermochemical Two-Step Water-Splitting. Journal of Materials Science. 45(15):4163–4173.