Biblio

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PEC
Palm DW, Muzzillo CP, Ben-Naim M, Khan I, Gaillard N, Jaramillo TF.  2020.  Tungsten oxide-coated copper gallium selenide sustains long-term solar hydrogen evolution. Sustainable Energy & Fuels. 5
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.
Hajibabaei H, Little DJ, Pandey A, Wang D, Mi Z, Hamann TW.  2019.  Direct Deposition of Crystalline Ta3N5 Thin Films on FTO for PEC Water Splitting. ACS Applied Materials & Interfaces. 11:15457-15466.
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.
Britto RJ, Young JL, Yang Y, Steiner MA, LaFehr DT, Friedman DJ, Beard M, Deutsch TG, Jaramillo TF.  2019.  Interfacial engineering of gallium indium phosphide photoelectrodes for hydrogen evolution with precious metal and non-precious metal based catalysts. Journal of Materials Chemistry A. 7:16821-16832.
Vanka S, Sun K, Zeng G, Pham TAnh, Toma FMaria, Ogitsu T, Mi Z.  2019.  Long-term stability studies of a semiconductor photoelectrode in three-electrode configuration. Journal of Materials Chemistry A. 7:27612-27619.
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.
Wang Y, Schwartz J, Gim J, Hovden R, Mi Z.  2019.  Stable Unassisted Solar Water Splitting on Semiconductor Photocathodes Protected by Multifunctional GaN Nanostructures. ACS Energy Letters. 4:1541-1548.
Gauthier JA, King LA, Stults FTucker, Flores RA, Kibsgaard J, Regmi YN, Chan K, Jaramillo TF.  2019.  Transition Metal Arsenide Catalysts for the Hydrogen Evolution Reaction. The Journal of Physical Chemistry C. 123:24007-24012.
Perovskite
Qian X., He J., Mastronardo E., Baldassarri B., Wolverton C., Haile S.M.  2020.  Favorable Redox Thermodynamics of SrTi0.5Mn0.5O3−δ in Solar Thermochemical Water Splitting. Chemistry of Materials. 32(21):9335-9346.
Bare ZJL, Morelock RJ, Musgrave CB.  2022.  A Computational Framework to Accelerate the Discovery of Perovskites for Solar Thermochemical Hydrogen Production: Identification of Gd Perovskite Oxide Redox Mediators. Advanced Functional Materials. :2200201.
Sanders M, Bergeson-Keller A, Coker E, O’Hayre R.  2022.  A Thermogravimetric Temperature-Programmed Thermal Redox Protocol for Rapid Screening of Metal Oxides for Solar Thermochemical Hydrogen Production. Frontiers in Energy Research. 10:856943.
Christians J, Manser J, Kamat P.  2015.  Best Practices in Perovskite Solar Cell Efficiency Measurements. Avoiding the Error of Making Bad Cells Look Good. Journal of Physical Chemistry Letters. 6:852-857.
Millican SL, Deml AM, Papac M, Zakutayev A, O’Hayre R, Holder AM, Musgrave CB, Stevanović V.  2022.  Predicting Oxygen Off-Stoichiometry and Hydrogen Incorporation in Complex Perovskite Oxides. Chemistry of Materials. 34:510-518.
Millican SL, Clary JM, Musgrave CB, Lany S.  2022.  Redox Defect Thermochemistry of FeAl2O4 Hercynite in Water Splitting from First-Principles Methods. Chemistry of Materials. 34:519-528.
Park B-K, Zhang Q, Voorhees PW, Barnett SA.  2019.  Conditions for stable operation of solid oxide electrolysis cells: oxygen electrode effects. Energy Environ. Sci.. 12:3053-3062.