Biblio

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Ezbiri M, Allen KM, Gàlvez ME, Michalsky R, Steinfeld A.  0.  Design principles of perovskites for thermochemical oxygen separation. ChemSusChem. 8(11):1966-1971.
Esposito DV, Baxter JB, John J, Lewis NS, Moffat TP, Ogitsu T, O'Neil GD, Pham TAnh, A. Talin A, Velazquez JM et al..  0.  Methods of photoelectrode characterization with high spatial and temporal resolution. Energy & Environmental Science. 8(10):2863-2885.
Ermanoski I, Siegel NP, Stechel EB.  2013.  A new reactor concept for efficient solar-thermochemical fuel production. Journal of Solar Energy Engineering. 135(3):031002.
Ermanoski I., Miller J.E, Allendorf M.D.  2014.  Efficiency maximization in solar-thermochemical fuel production: Challenging the concept of isothermal water splitting. Physical Chemistry Chemical Physics. 16(18):8418.
Ermanoski I., Siegel N..  2014.  Annual Average Efficiency of a Solar-thermochemical Reactor. Energy Procedia. 49:1932-1939.
Ermanoski I.  2014.  Cascading pressure thermal reduction for efficient solar fuel production. International Journal of Hydrogen Energy. 39(25):13114-13117.
Ermanoski I..  0.  Maximizing efficiency in two-step solar-thermochemical fuel production. Energy Procedia. 69:1731-1740.
Ermanoski I, Grobbel J, Singh A, Lapp J, Brendelberger S, Roeb M, Sattler C, Whaley J, McDaniel A, Siegel NP.  2016.  Design and construction of a cascading pressure reactor prototype for solar-thermochemical hydrogen production. 1734:120001.
Emery AA, Saal JE, Kirklin S, Hegde VI, Wolverton C.  0.  High-throughput computational screening of perovskites for thermochemical water splitting applications. Chemistry of Materials. 28(16):5621-5634.
Elvington MC, Colon-Mercado H, McCatty S, Stone SG, Hobbs DT.  0.  Evaluation of proton-conducting membranes for use in a sulfur dioxide depolarized electrolyzer. Journal of Power Sources. 195(9):2823-2829.
Eljarrat A, Sastre X, Peiró F, Estradé S.  0.  Density Functional Theory Modeling of Low-Loss Electron Energy-Loss Spectroscopy in Wurtzite III-Nitride Ternary Alloys. Microscopy and Microanalysis. 22(03):706-716.
Ehrhart BD, Muhich CL, Al-Shankiti I, Weimer AW.  0.  System efficiency for two-step metal oxide solar thermochemical hydrogen production – Part 1: Thermodynamic model and impact of oxidation kinetics. International Journal of Hydrogen Energy. 41(44):19881-19893.
Ehrhart BD, Muhich CL, Al-Shankiti I, Weimer AW.  0.  System efficiency for two-step metal oxide solar thermochemical hydrogen production – Part 2: Impact of gas heat recuperation and separation temperatures. International Journal of Hydrogen Energy. 41(44):19881-19893.
Ehrhart BD, Muhich CL, Al-Shankiti I, Weimer AW.  0.  System efficiency for two-step metal oxide solar thermochemical hydrogen production – Part 3: Various methods for achieving low oxygen partial pressures in the reduction reaction. International Journal of Hydrogen Energy. 41(44):19881-19893.