Biblio

Export 123 results:
Author Keyword Title [ Type(Desc)] Year
Filters: First Letter Of Last Name is H  [Clear All Filters]
Journal Article
Houaijia A, Sattler C, Roeb M, Lange M, Breuer S, Säck JPeter.  2013.  Analysis and improvement of a high-efficiency solar cavity reactor design for a two-step thermochemical cycle for solar hydrogen production from water. Solar Energy. 97:26-38.
Varley J.B, Lordi V., Ogitsu T., Deangelis A., Horsley K., Gaillard N..  2018.  Assessing the role of hydrogen in Fermi-level pinning in chalcopyrite and kesterite solar absorbers from first-principles calculations. Journal of Applied Physics. 123(16):161408.
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.
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.
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.
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.
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.
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
Hoskins AL, Millican SL, Czernik CE, Alshankiti I, Netter JC, Wendelin TJ, Musgrave CB, Weimer AW.  2019.  Continuous on-sun solar thermochemical hydrogen production via an isothermal redox cycle. Applied Energy. 249:368-376.
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.
Hwang S, Porter SH, Laursen AB, Yang H, Li M, Manichev V, Calvinho KUD, Amarasinghe V, Greenblatt M, Garfunkel E et al..  2019.  Creating stable interfaces between reactive materials: titanium nitride protects photoabsorber–catalyst interface in water-splitting photocathodes. Journal of Materials Chemistry A. 7(5):2400-2411.
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.
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.
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.
Gómez SYesid, Hotza D.  2016.  Current developments in reversible solid oxide fuel cells. Renewable and Sustainable Energy Reviews. 61:155-174.
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.
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.
Hathaway BJ, Chandran RBala, Gladen AC, Chase TR, Davidson JH.  0.  Demonstration of a solar reactor for carbon dioxide splitting via the isothermal ceria redox cycle and practical implications. Energy & Fuels. 30(8):6654-6661.
He Y, Vanka S, Gao T, He D, Espano J, Zhao Y, Dong Q, Lang C, Wang Y, Hamann TW et al..  2019.  Dependence of interface energetics and kinetics on catalyst loading in a photoelectrochemical system. Nano Research.
He Y, Vanka S, Gao T, He D, Espano J, Zhao Y, Dong Q, Lang C, Wang Y, Hamann TW et al..  2019.  Dependence of interface energetics and kinetics on catalyst loading in a photoelectrochemical system. Nano Research.
He Y, Vanka S, Gao T, He D, Espano J, Zhao Y, Dong Q, Lang C, Wang Y, Hamann TW et al..  2019.  Dependence of interface energetics and kinetics on catalyst loading in a photoelectrochemical system. Nano Research.
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.
Ding D, Wu W, He T.  Submitted.  Development of High Performance Intermediate Temperature Proton-Conducting Solid Oxide Electrolysis Cells. 80(9):167-173.