Biblio

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Journal Article
Ermanoski I.  2014.  Cascading pressure thermal reduction for efficient solar fuel production. International Journal of Hydrogen Energy. 39(25):13114-13117.
Colón-Mercado HR, Hobbs DT.  2007.  Catalyst evaluation for a sulfur dioxide-depolarized electrolyzer. Electrochemistry Communications. 9(11):2649-2653.
Wang Y, He D, Chen H, Wang D.  2019.  Catalysts in electro-, photo- and photoelectrocatalytic CO2 reduction reactions. Journal of Photochemistry and Photobiology C: Photochemistry Reviews.
Rashkeev SN, Ginosar DM, Petkovic LM, Farrell HH.  2009.  Catalytic activity of supported metal particles for sulfuric acid decomposition reaction. Catalysis Today. 139(4):291-298.
Singh P, Hegde M.S.  2010.  Ce0.67Cr0.33O2.11: A New Low-Temperature O2 Evolution Material and H2 Generation Catalyst by Thermochemical Splitting of Water. Chemistry of Materials. 22(3):762-768.
Millet P., Ranjbari A., de Guglielmo F., Grigoriev S.A, Auprêtre F..  2012.  Cell failure mechanisms in PEM water electrolyzers. International Journal of Hydrogen Energy. 37(22):17478-17487.
Zhu X, Sun L, Zheng Y, Wang H, Wei Y, Li K.  2014.  CeO2 modified Fe2O3 for the chemical hydrogen storage and production via cyclic water splitting. International Journal of Hydrogen Energy. 39(25):13381-13388.
Chueh WC, Haile SM.  2009.  Ceria as a Thermochemical Reaction Medium for Selectively Generating Syngas or Methane from H2O and CO2. ChemSusChem. 2(8):735-739.
Gibbons WT, Venstrom LJ, De Smith RM, Davidson JH, Jackson GS.  2014.  Ceria-based electrospun fibers for renewable fuel production via two-step thermal redox cycles for carbon dioxide splitting. Physical Chemistry Chemical Physics. 16(27):14271.
Hao Y, Yang C-K, Haile SM.  2014.  Ceria–zirconia solid solutions (Ce1–xZrxO2−δ, x≤0.2) for solar thermochemical water splitting: A thermodynamic study. Chemistry of Materials. 26(20):6073-6082.
Naghavi S.S, He J., Wolverton C..  2020.  CeTi2O6—A Promising Oxide for Solar Thermochemical Hydrogen Production. ACS Applied Materials & Interfaces. 12(19):21521-21527.
Alia S, Ding D, McDaniel A, Toma FM, Dinh HN.  2021.  Chalkboard 2 - How to Make Clean Hydrogen. The Electrochemical Society Interface. 30:49–56.
Bezmalinovic D, Simic B, Barbir F.  2015.  Characterization of PEM fuel cell degradation by polarization change curves. Journal of Power Sources. 294:82-87.
Levêque G, Abanades S, Jumas J-C, Olivier-Fourcade J.  2014.  Characterization of Two-Step Tin-Based Redox System for Thermochemical Fuel Production from Solar-Driven CO 2 and H 2 O Splitting Cycle. Industrial & Engineering Chemistry Research. 53(14):5668-5677.
Garrick TR, Wilkins CH, Pingitore AT, Mehlhoff J, Gulledge A, Benicewicz BC, Weidner JW.  2017.  Characterizing Voltage Losses in an SO2 Depolarized Electrolyzer Using Sulfonated Polybenzimidazole Membranes. Journal of The Electrochemical Society. 164(14):F1591-F1595.
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.
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.
Zhang S-L, Wang H, Lu MY, Zhang A-P, Mogni LV, Liu Q, Li C-X, Li C-J, Barnett SA.  2018.  Cobalt-substituted SrTi0.3Fe0.7O3−δ: a stable high-performance oxygen electrode material for intermediate-temperature solid oxide electrochemical cells. Energy & Environmental Science. 11(7):1870-1879.
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.
Lany S.  2018.  Communication: The electronic entropy of charged defect formation and its impact on thermochemical redox cycles. The Journal of Chemical Physics. 148(7):071101.
Nikolaidis P, Poullikkas A.  2017.  A comparative overview of hydrogen production processes. Renewable and Sustainable Energy Reviews. 67:597-611.
Shen X, Yanagi R, Solanki D, Su H, Li Z, Xiang C-X, Hu S.  2022.  Comprehensive Evaluation for Protective Coatings: Optical, Electrical, Photoelectrochemical, and Spectroscopic Characterizations. Frontiers in Energy Research. 9
Ma Z, Witteman L, Wrubel JA, Bender G.  2021.  A comprehensive modeling method for proton exchange membrane electrolyzer development. International Journal of Hydrogen Energy. 46:17627-17643.
Bare ZJL, Morelock RJ, Musgrave CB.  2022.  A Computational Framework to Accelerate the Discovery of Perovskites for Solar Thermochemical Hydrogen Production: Identification of Gd Perovskite Oxide Redox Mediators. Advanced Functional Materials. :2200201.
Park J.E, Bare Z.JL, Morelock R.J, Rodriguez M.A, Ambrosini A., Musgrave C.B, McDaniel A.H, Coker E.N.  2021.  Computationally Accelerated Discovery and Experimental Demonstration of Gd0.5La0.5Co0.5Fe0.5O3 for Solar Thermochemical Hydrogen Production. Frontiers in Energy Research. 9