Biblio

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E
Kistler TA, Zeng G, Young JL, Weng L-C, Aldridge C, Wyatt K, Steiner MA, Jr. OSolorzano, Houle FA, Toma FM et al..  2020.  Emergent Degradation Phenomena Demonstrated on Resilient, Flexible, and Scalable Integrated Photoelectrochemical Cells. Advanced Energy Materials. 10:2002706.
Kistler TA, Zeng G, Young JL, Weng L-C, Aldridge C, Wyatt K, Steiner MA, Jr. OSolorzano, Houle FA, Toma FM et al..  2020.  Emergent Degradation Phenomena Demonstrated on Resilient, Flexible, and Scalable Integrated Photoelectrochemical Cells. Advanced Energy Materials. 10:2002706.
White RR, Munch K, Wunder N, Guba N, Sivaraman C, Van Allsburg KM, Dinh H, Pailing C.  2021.  Energy Material Network Data Hubs. International Journal of Advanced Computer Science and Applications. 12
Rudisill SG, Venstrom LJ, Petkovich ND, Quan T, Hein N, Boman DB, Davidson JH, Stein A.  0.  Enhanced Oxidation Kinetics in Thermochemical Cycling of CeO 2 through Templated Porosity. The Journal of Physical Chemistry C. 117(4):1692-1700.
Toops TJ, Brady MP, Zhang F-Y, Meyer HM, Ayers K, Roemer A, Dalton L.  0.  Evaluation of nitrided titanium separator plates for proton exchange membrane electrolyzer cells. Journal of Power Sources. 272:954-960.
Ji H-I, Davenport TC, Gopal CBalaji, Haile SM.  2016.  Extreme high temperature redox kinetics in ceria: Exploration of the transition from gas-phase to material-kinetic limitations. Phys. Chem. Chem. Phys.. 18(31):21554-21561.
H
Lapp J, Davidson JH, Lipiński W.  0.  Heat Transfer Analysis of a Solid-Solid Heat Recuperation System for Solar-Driven Nonstoichiometric Redox Cycles. Journal of Solar Energy Engineering. 135(3):031004.
Lim H, Young JL, Geisz JF, Friedman DJ, Deutsch TG, Yoon J.  2019.  High performance III-V photoelectrodes for solar water splitting via synergistically tailored structure and stoichiometry. Nature Communications. 10:3388.
Hwang S, Young JL, Mow R, Laursen AB, Li M, Yang H, Batson PE, Greenblatt M, Steiner MA, Friedman D et al..  2020.  Highly efficient and durable III–V semiconductor-catalyst photocathodes via a transparent protection layer. Sustainable Energy Fuels. 4(3):1437-1442.
Hwang S, Young JL, Mow R, Laursen AB, Li M, Yang H, Batson PE, Greenblatt M, Steiner MA, Friedman D et al..  2020.  Highly efficient and durable III–V semiconductor-catalyst photocathodes via a transparent protection layer. Sustainable Energy Fuels. 4(3):1437-1442.
de Groot F.  0.  High-Resolution X-ray Emission and X-ray Absorption Spectroscopy. Chemical Reviews. 101(6):1779-1808.
Dinh HN, Boardman R, McDaniel A.H., Colon-Mercado H, Ogitsu T., Weber A.Z..  2019.  HydroGEN Overview: A Consortium on Advanced Water Splitting Materials (AWSM). FY 2018 DOE Hydrogen and Fuel Cells Program Annual Progress Report.
Wu W, Ding H, Zhang Y, Ding Y, Katiyar P, Majumdar PK, He T, Ding D.  2018.  Hydrogen Production: 3D Self-Architectured Steam Electrode Enabled Efficient and Durable Hydrogen Production in a Proton-Conducting Solid Oxide Electrolysis Cell at Temperatures Lower Than 600 °C (Adv. Sci. 11/2018). Advanced Science. 5(11):1870070.
Wu W, Ding H, Zhang Y, Ding Y, Katiyar P, Majumdar PK, He T, Ding D.  2018.  Hydrogen Production: 3D Self-Architectured Steam Electrode Enabled Efficient and Durable Hydrogen Production in a Proton-Conducting Solid Oxide Electrolysis Cell at Temperatures Lower Than 600 °C (Adv. Sci. 11/2018). Advanced Science. 5(11):1870070.
Wu W, Ding H, Zhang Y, Ding Y, Katiyar P, Majumdar PK, He T, Ding D.  2018.  Hydrogen Production: 3D Self-Architectured Steam Electrode Enabled Efficient and Durable Hydrogen Production in a Proton-Conducting Solid Oxide Electrolysis Cell at Temperatures Lower Than 600 °C (Adv. Sci. 11/2018). Advanced Science. 5(11):1870070.
Pivovar BS, Ruth MF, Myers DJ, Dinh HN.  2021.  Hydrogen: Targeting \textdollar1/kg in 1 Decade. The Electrochemical Society Interface. 30:61–66.