Biblio

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Journal Article
Gaillard N, Prasher D, Chong M, Deangelis A, Horsley K, Ishii HA, Bradley JP, Varley J, Ogitsu T.  2019.  Wide-Bandgap Cu(In,Ga)S2 Photocathodes Integrated on Transparent Conductive F:SnO2 Substrates for Chalcopyrite-Based Water Splitting Tandem Devices. ACS Applied Energy Materials. 2(8):5515-5524.
DeAngelis AD, Horsley K, Gaillard N.  2018.  Wide Band Gap CuGa(S,Se)2 Thin Films on Transparent Conductive Fluorinated Tin Oxide Substrates as Photocathode Candidates for Tandem Water Splitting Devices. The Journal of Physical Chemistry C. 122(26):14304-14312.
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.
Kinyanjui M.K, Axmann P., Mancini M., Gabrielli G., Balasubramanian P., Boucher F., Wohlfahrt-Mehrens M., Kaiser U..  0.  Understanding the spectroscopic signatures of Mn valence changes in the valence energy loss spectra of Li-Mn-Ni-O spinel oxides. Physical Review Materials. 1(7)
Tang W, Ding H, Bian W, Wu W, Li W, Liu X, Gomez JY, Vera CYRegalad, Zhou M, Ding D.  2020.  Understanding of A-site deficiency in layered perovskites: promotion of dual reaction kinetics for water oxidation and oxygen reduction in protonic ceramic electrochemical cells. J. Mater. Chem. A. 8:14600-14608.
Chen B-R, Sun W, Kitchaev DA, Mangum JS, Thampy V, Garten LM, Ginley DS, Gorman BP, Stone KH, Ceder G et al..  0.  Understanding crystallization pathways leading to manganese oxide polymorph formation. Nature Communications. 9(1):2553.
Chen B-R, Sun W, Kitchaev DA, Mangum JS, Thampy V, Garten LM, Ginley DS, Gorman BP, Stone KH, Ceder G et al..  0.  Understanding crystallization pathways leading to manganese oxide polymorph formation. Nature Communications. 9(1):2553.
Chen B-R, Sun W, Kitchaev DA, Mangum JS, Thampy V, Garten LM, Ginley DS, Gorman BP, Stone KH, Ceder G et al..  0.  Understanding crystallization pathways leading to manganese oxide polymorph formation. Nature Communications. 9(1):2553.
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
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.
Nemrava S, Vinnik DA, Hu Z, Valldor M, Kuo C-Y, Zherebtsov DA, Gudkova SA, Chen C-T, Tjeng LHao, Niewa R.  0.  Three Oxidation States of Manganese in the Barium Hexaferrite BaFe 12– x Mn x O 19. Inorganic Chemistry. 56(7):3861-3866.
Kaur H, Wang M, Gorensek MB, Chen C-C.  0.  Thermodynamic modeling of the hybrid sulfur (HyS) cycle for hydrogen production. Fluid Phase Equilibria. 460:175-188.
Kodama T., Gokon N., Yamamoto R..  0.  Thermochemical Two-Step Water Splitting by ZrO2-supported NixFe3−xO4 for Solar Hydrogen Production. Solar Energy. 82(1):73-79.
Gokon N, Mataga T, Kondo N, Kodama T.  0.  Thermochemical two-step water splitting by internally circulating fluidized bed of NiFe2O4 particles: Successive reaction of thermal-reduction and water-decomposition steps. International Journal of Hydrogen Energy. 36(8):4757-4767.
Gokon N, Suda T, Kodama T.  0.  Thermochemical reactivity of 5–15mol% Fe, Co, Ni, Mn-doped cerium oxides in two-step water-splitting cycle for solar hydrogen production. Thermochimica Acta. 617:179-190.
Kodama T, Gokon N.  0.  Thermochemical Cycles for High-Temperature Solar Hydrogen Production. Chemical Reviews. 107(10):4048-4077.
Roeb M., Säck J.-P., Rietbrock P., Prahl C., Schreiber H., Neises M., de Oliveira L., Graf D., Ebert M., Reinalter W. et al..  0.  Test operation of a 100kW pilot plant for solar hydrogen production from water on a solar tower. Solar Energy. 85(4):634-644.
Li W, Guan B, Ma L, Tian H, Liu X.  2019.  Synergistic Coupling of Proton Conductors BaZr0.1Ce0.7Y0.1Yb0.1O3−δ and La2Ce2O7 to Create Chemical Stable, Interface Active Electrolyte for Steam Electrolysis Cells. ACS Applied Materials & Interfaces. 11:18323-18330.
Graves C, Ebbesen SD, Mogensen M, Lackner KS.  0.  Sustainable hydrocarbon fuels by recycling CO2 and H2O with renewable or nuclear energy. Renewable and Sustainable Energy Reviews. 15(1):1-23.
Shi Y, Stone KH, Guan Z, Monti M, Cao C, Gabaly FEl, Chueh WC, Toney MF.  0.  Surface structure of coherently strained ceria ultrathin films. Physical Review B. 94(20)
Shi Y, Stone KH, Guan Z, Monti M, Cao C, Gabaly FEl, Chueh WC, Toney MF.  0.  Surface structure of coherently strained ceria ultrathin films. Physical Review B. 94(20)
Macías MA, Mentré O, Colis S, Cuello GJ, Gauthier GH.  0.  Structure and magnetic properties of Ba5Ce1.25Mn3.75O15, a new 10H-polytype in the Ba–Ce–Mn–O system. Journal of Solid State Chemistry. 198:186-191.
Bekheet MF, Gruenbacher M, Schlicker L, Gili A, Doran A, Epping JDirk, Gurlo A, Kloetzer B, Penner S.  0.  On the structural stability of crystalline ceria phases in undoped and acceptor-doped ceria materials under in situ reduction conditions. Crystengcomm. 21(1):145-154.