Biblio

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Sun S, Shao Z, Yu H, Li G, Yi B.  0.  Investigations on degradation of the long-term proton exchange membrane water electrolysis stack. Journal of Power Sources. 267:515-520.
Suermann M, Kiupel T, Schmidt TJ, Büchi FN.  0.  Electrochemical Hydrogen Compression: Efficient Pressurization Concept Derived from an Energetic Evaluation. Journal of The Electrochemical Society. 164(12):F1187-F1195.
Stuart PA, Unno T, Kilner JA, Skinner SJ.  0.  Solid oxide proton conducting steam electrolysers. Solid State Ionics. 179(21):1120-1124.
Strange NA, Park JEujin, Goyal A, Bell RT, Trindell JA, Sugar JD, Stone KH, Coker EN, Lany S, Shulda S et al..  2022.  Formation of 6H-Ba3Ce0.75Mn2.25O9 During Thermochemical Reduction of 12R-Ba4CeMn3O12: Identification of a Polytype in the Ba(Ce,Mn)O3 Family. Inorganic Chemistry. 61
Steinfeld A.  0.  Solar thermochemical production of hydrogen––a review. Solar Energy. 78(5):603-615.
Steinfeld A., Palumbo R..  2001.  Solar thermochemical process technology. Encyclopedia of physical science and technology. 15:237–256.
Steiner MA, Barraugh CD, Aldridge CW, Alvarez IBarraza, Friedman DJ, Ekins-Daukes NJ, Deutsch TG, Young JL.  2019.  Photoelectrochemical water splitting using strain-balanced multiple quantum well photovoltaic cells. Sustainable Energy Fuels. 3:2837-2844.
Steimke JL, Steeper TJ, Colón-Mercado HR, Gorensek MB.  0.  Development and testing of a PEM SO2-depolarized electrolyzer and an operating method that prevents sulfur accumulation. International Journal of Hydrogen Energy. 40(39):13281-13294.
Stehle R.C., Bobek M.M., Hooper R., Hahn D.W..  0.  Oxidation reaction kinetics for the steam-iron process in support of hydrogen production. International Journal of Hydrogen Energy. 36(23):15125-15135.
Stechel EB, Miller JE.  0.  Re-energizing CO2 to fuels with the sun: Issues of efficiency, scale, and economics. Journal of CO2 Utilization. 1:28-36.
Spanos I, Auer AA, Neugebauer S, Deng X, Tüysüz H, Schlögl R.  0.  Standardized Benchmarking of Water Splitting Catalysts in a Combined Electrochemical Flow Cell/Inductively Coupled Plasma–Optical Emission Spectrometry (ICP-OES) Setup. ACS Catalysis. 7(6):3768-3778.
Spanopoulos I, Hadar I, Ke W, Guo P, Sidhik S, Kepenekian M, Even J, Mohite AD, Schaller RD, Kanatzidis MG.  2020.  Water-Stable 1D Hybrid Tin(II) Iodide Emits Broad Light with 36% Photoluminescence Quantum Efficiency. Journal of the American Chemical Society. 142:9028-9038.
Song S, Zhang H, Ma X, Shao Z, Baker RT, Yi B.  0.  Electrochemical investigation of electrocatalysts for the oxygen evolution reaction in PEM water electrolyzers. International Journal of Hydrogen Energy. 33(19):4955-4961.
Smestad GP, Steinfeld A.  0.  Review: Photochemical and thermochemical production of solar fuels from H2O and CO2 using metal oxide catalysts. Industrial & Engineering Chemistry Research. 51(37):11828-11840.
Slavcheva E., Radev I., Bliznakov S., Topalov G., Andreev P., Budevski E..  0.  Sputtered iridium oxide films as electrocatalysts for water splitting via PEM electrolysis. Electrochimica Acta. 52(12):3889-3894.
Singstock N.R, Bartel C.J, Holder A.M, Musgrave C.B.  2020.  High-Throughput Analysis of Materials for Chemical Looping Processes. Advanced Energy Materials. 10(27)
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.
Singh A, Lapp J, Grobbel J, Brendelberger S, Reinhold JP, Olivera L, Ermanoski I, Siegel NP, McDaniel A, Roeb M et al..  0.  Design of a pilot scale directly irradiated, high temperature, and low pressure moving particle cavity chamber for metal oxide reduction. Solar Energy. 157:365-376.
Simons P, Ji H-I, Davenport TC, Haile SM.  2017.  A piezomicrobalance system for high-temperature mass relaxation characterization of metal oxides: A case study of Pr-doped ceria. Journal of the American Ceramic Society. 100(3):1161-1171.
Simchi H, Cooley KA, Ohms J, Huang L, Kurz P, Mohney SE.  2018.  Cosputtered Calcium Manganese Oxide Electrodes for Water Oxidation. Inorganic Chemistry. 57(2):785-792.
Siegel NP, Ermanoski I.  2013.  A Beam-down Central Receiver for Solar Thermochemical Hydrogen Production.
Siegel NP, Miller JE, Ermanoski I, Diver RB, Stechel EB.  0.  Factors affecting the efficiency of solar driven metal oxide thermochemical cycles. Industrial & Engineering Chemistry Research. 52(9):3276-3286.
Shmakov AN, Cherepanova SV, Zyuzin DA, Fedorova YE, Bobrikov IA, Roger A-C, Adamski A, Sadykov VA.  0.  The crystal structure of compositionally homogeneous mixed ceria-zirconia oxides by high resolution X-ray and neutron diffraction methods. Open Chemistry. 15(1):438-445.
Shimoda Y, Doi Y, Wakeshima M, Hinatsu Y.  0.  Magnetic and electrical properties of quadruple perovskites with 12 layer structures Ba4LnM3O12 (Ln=rare earths; M=Ru, Ir): The role of metal–metal bonding in perovskite-related oxides. Journal of Solid State Chemistry. 183(9):1962-1969.
Shi Y, Stone KH, Guan Z, Monti M, Cao C, Gabaly FEl, Chueh WC, Toney MF.  0.  Surface structure of coherently strained ceria ultrathin films. Physical Review B. 94(20)