Biblio

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Journal Article
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
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
Romero M, Steinfeld A.  2012.  Concentrating solar thermal power and thermochemical fuels. Energy & Environmental Science. 5(11):9234-9245.
Brendelberger S, Sattler C.  2015.  Concept analysis of an indirect particle-based redox process for solar-driven H2O/CO2 splitting. Solar Energy. 113:158-170.
Ellis DS, Piekner Y, Grave DA, Schnell P, Rothschild A.  2022.  Considerations for the Accurate Measurement of Incident Photon to Current Efficiency in Photoelectrochemical Cells. Frontiers in Energy Research. 9
Petkovich ND, Rudisill SG, Venstrom LJ, Boman DB, Davidson JH, Stein A.  2011.  Control of Heterogeneity in Nanostructured Ce1–xZrxO2 Binary Oxides for Enhanced Thermal Stability and Water Splitting Activity. The Journal of Physical Chemistry C. 115(43):21022-21033.
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.
Jarrett C, Chueh W, Yuan C, Kawajiri Y, Sandhage KH, Henry A.  2016.  Critical limitations on the efficiency of two-step thermochemical cycles. Solar Energy. 123:57-73.
Babic U, Suermann M, Büchi FN, Gubler L, Schmidt TJ.  2017.  Critical Review—Identifying Critical Gaps for Polymer Electrolyte Water Electrolysis Development. Journal of The Electrochemical Society. 164(4):F387-F399.
Babic U, Suermann M, Büchi FN, Gubler L, Schmidt TJ.  2017.  Critical Review—Identifying Critical Gaps for Polymer Electrolyte Water Electrolysis Development. Journal of The Electrochemical Society. 164(4):F387-F399.
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.
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.
Xiao Y, Vanka S, Pham TAnh, Dong WJae, Sun Y, Liu X, Navid IAhmed, Varley JB, Hajibabaei H, Hamann TW et al..  2022.  Crystallographic Effects of GaN Nanostructures in Photoelectrochemical Reaction. Nano Letters. 22:2236-2243.
Hauch A, Brodersen K, Chen M, Graves C, Jensen SHøjgaard, Jørgensen PStanley, Hendriksen PVang, Mogensen MBjerg, Ovtar S, Sun X.  2017.  A Decade of Solid Oxide Electrolysis Improvements at DTU Energy. ECS Transactions. 75(42):3-14.
Tian H, Li W, Ma L, Yang T, Guan B, Shi W, Kalapos TL, Liu X.  2020.  Deconvolution of Water-Splitting on the Triple-Conducting Ruddlesden–Popper-Phase Anode for Protonic Ceramic Electrolysis Cells. ACS Applied Materials & Interfaces. 12:49574-49585.
Wu T-S, Syu L-Y, Weng S-C, Jeng H-T, Chang S-L, Soo Y-L.  0.  Defect engineering by synchrotron radiation X-rays in CeO2 nanocrystals. Journal of Synchrotron Radiation. 25:1395-1399.
Wu T-S, Syu L-Y, Weng S-C, Jeng H-T, Chang S-L, Soo Y-L.  0.  Defect engineering by synchrotron radiation X-rays in CeO2 nanocrystals. Journal of Synchrotron Radiation. 25:1395-1399.
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.
Juran TR, Young J, Smeu M.  0.  Density Functional Theory Modeling of MnO 2 Polymorphs as Cathodes for Multivalent Ion Batteries. The Journal of Physical Chemistry C. 122(16):8788-8795.
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.
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.
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.
Bader R, Chandran RBala, Venstrom LJ, Sedler SJ, Krenzke PT, De Smith RM, Banerjee A, Chase TR, Davidson JH, LipiĹ W et al..  2015.  Design of a Solar Reactor to Split CO2 Via Isothermal Redox Cycling of Ceria. Journal of Solar Energy Engineering. 137(3):031007.
Michalsky R, Botu V, Hargus CM, Peterson AA, Steinfeld A.  0.  Design principles for metal oxide redox materials for solar-driven isothermal fuel production. Advanced Energy Materials. 5(7):1401082.
Ezbiri M, Allen KM, Gàlvez ME, Michalsky R, Steinfeld A.  0.  Design principles of perovskites for thermochemical oxygen separation. ChemSusChem. 8(11):1966-1971.