Biblio
Export 15 results:
[ Author
Filters: First Letter Of Last Name is E [Clear All Filters]
Design principles of perovskites for thermochemical oxygen separation. ChemSusChem. 8(11):1966-1971.
.
0. Methods of photoelectrode characterization with high spatial and temporal resolution. Energy & Environmental Science. 8(10):2863-2885.
.
0. Cascading pressure thermal reduction for efficient solar fuel production. International Journal of Hydrogen Energy. 39(25):13114-13117.
.
2014. Maximizing efficiency in two-step solar-thermochemical fuel production. Energy Procedia. 69:1731-1740.
.
0. Design and construction of a cascading pressure reactor prototype for solar-thermochemical hydrogen production. 1734:120001.
.
2016. A new reactor concept for efficient solar-thermochemical fuel production. Journal of Solar Energy Engineering. 135(3):031002.
.
2013. Efficiency maximization in solar-thermochemical fuel production: Challenging the concept of isothermal water splitting. Physical Chemistry Chemical Physics. 16(18):8418.
.
2014. Annual Average Efficiency of a Solar-thermochemical Reactor. Energy Procedia. 49:1932-1939.
.
2014. High-throughput computational screening of perovskites for thermochemical water splitting applications. Chemistry of Materials. 28(16):5621-5634.
.
0. Evaluation of proton-conducting membranes for use in a sulfur dioxide depolarized electrolyzer. Journal of Power Sources. 195(9):2823-2829.
.
0. Considerations for the Accurate Measurement of Incident Photon to Current Efficiency in Photoelectrochemical Cells. Frontiers in Energy Research. 9
.
2022. Density Functional Theory Modeling of Low-Loss Electron Energy-Loss Spectroscopy in Wurtzite III-Nitride Ternary Alloys. Microscopy and Microanalysis. 22(03):706-716.
.
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.
.
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.
.
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.
.
0.