Biblio

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Journal Article
Ben-Naim M, Britto RJ, Aldridge CW, Mow R, Steiner MA, Nielander AC, King LA, Friedman DJ, Deutsch TG, Young JL et al..  2020.  Addressing the Stability Gap in Photoelectrochemistry: Molybdenum Disulfide Protective Catalysts for Tandem III–V Unassisted Solar Water Splitting. ACS Energy Letters. :2631-2640.
McCrory CCL, Jung S, Ferrer IM, Chatman SM, Peters JC, Jaramillo TF.  2015.  Benchmarking Hydrogen Evolving Reaction and Oxygen Evolving Reaction Electrocatalysts for Solar Water Splitting Devices. Journal of the American Chemical Society. 137(13):4347-4357.
Rashkeev SN, Ginosar DM, Petkovic LM, Farrell HH.  2009.  Catalytic activity of supported metal particles for sulfuric acid decomposition reaction. Catalysis Today. 139(4):291-298.
Le Gal A, Abanades S, Flamant G.  2011.  CO2 and H2O Splitting for Thermochemical Production of Solar Fuels Using Nonstoichiometric Ceria and Ceria/Zirconia Solid Solutions. Energy & Fuels. 25(10):4836-4845.
Shmakov AN, Cherepanova SV, Zyuzin DA, Fedorova YE, Bobrikov IA, Roger A-C, Adamski A, Sadykov VA.  0.  The crystal structure of compositionally homogeneous mixed ceria-zirconia oxides by high resolution X-ray and neutron diffraction methods. Open Chemistry. 15(1):438-445.
Shen Q., Elfimov I.S, Fanwick P., Tokura Y., Kimura T., Finkelstein K., Colella R., Sawatzky G.A.  0.  Determination of the Mechanism for Resonant Scattering in LaMnO 3. Physical Review Letters. 96(24)
Shen Q., Elfimov I.S, Fanwick P., Tokura Y., Kimura T., Finkelstein K., Colella R., Sawatzky G.A.  0.  Determination of the Mechanism for Resonant Scattering in LaMnO 3. Physical Review Letters. 96(24)
Lettenmeier P., Wang R., Abouatallah R., Helmly S., Morawietz T., Hiesgen R., Kolb S., Burggraf F., Kallo J., Gago A.S et al..  0.  Durable Membrane Electrode Assemblies for Proton Exchange Membrane Electrolyzer Systems Operating at High Current Densities. Electrochimica Acta. 210:502-511.
Toscani LM, Craievich AF, Fantini MCA, Lamas DG, Larrondo SA.  0.  Effects of the Incorporation of Sc2O3 into CeO2–ZrO2 Solid Solution: Structural Characterization and in Situ XANES/TPR Study under H2 Atmosphere. The Journal of Physical Chemistry C. 120(42):24165-24175.
Colón-Mercado HR, Mauger SA, Gorensek MB, Fujimoto CH, Lando AA, Ganesan P, Meekins BH, Meeks ND.  2022.  Electrode optimization for efficient hydrogen production using an SO2-depolarized electrolysis cell. International Journal of Hydrogen Energy. 47:14180-14185.
Lovesey S, Balcar E, Knight K, Fernandezrodriguez J.  0.  Electronic properties of crystalline materials observed in X-ray diffraction. Physics Reports. 411(4):233-289.
Liu J, Kang Z, Li D, Pak M, Alia SM, Fujimoto C, Bender G, Kim YSeung, Weber AZ.  2021.  Elucidating the Role of Hydroxide Electrolyte on Anion-Exchange-Membrane Water Electrolyzer Performance. Journal of The Electrochemical Society. 168:054522.
Charvin P, Abanades S, Lemont F, Flamant G.  0.  Experimental study of SnO 2 /SnO/Sn thermochemical systems for solar production of hydrogen. AIChE Journal. 54(10):2759-2767.
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.
Chueh W.C, Falter C., Abbott M., Scipio D., Furler P., Haile S.M, Steinfeld A..  0.  High-flux solar-driven thermochemical dissociation of CO2 and H2O using nonstoichiometric ceria. Science. 330(6012):1797-1801.
Chueh W.C, Falter C., Abbott M., Scipio D., Furler P., Haile S.M, Steinfeld A..  0.  High-flux solar-driven thermochemical dissociation of CO2 and H2O using nonstoichiometric ceria. Science. 330(6012):1797-1801.
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.
Kim YSeung, Li D, Park EJoo, Wenlei Z, Qiurong S, Zhou Y, Tian H, Lin Y, Serov A, Zulevi B et al..  2020.  Highly quaternized polystyrene ionomers for high performance anion exchange membrane water electrolysers. Nature Energy. 5
Colón-Mercado HR, Gorensek MB, Fujimoto CH, Lando AA, Meekins BH.  2022.  High-performance SO2-depolarized electrolysis cell using advanced polymer electrolyte membranes. International Journal of Hydrogen Energy. 47:57-68.
Wang Y, Vanka S, Gim J, Wu Y, Fan R, Zhang Y, Shi J, Shen M, Hovden R, Mi Z.  2019.  An In0.42Ga0.58N tunnel junction nanowire photocathode monolithically integrated on a nonplanar Si wafer. Nano Energy. 57:405-413.
Kiessling A, Fornaciari JC, Anderson G, Peng X, Gerstmayr A, Gerhardt MR, McKinney S, Serov A, Kim YSeung, Zulevi B et al..  2021.  Influence of Supporting Electrolyte on Hydroxide Exchange Membrane Water Electrolysis Performance: Anolyte. Journal of The Electrochemical Society. 168:084512.
Bender G., Carmo M., Smolinka T., Gago A., Danilovic N., Mueller M., Ganci F., Fallisch A., Lettenmeier P., Friedrich K.A et al..  2019.  Initial approaches in benchmarking and round robin testing for proton exchange membrane water electrolyzers. International Journal of Hydrogen Energy. 44(18):9174-9187.
Bender G., Carmo M., Smolinka T., Gago A., Danilovic N., Mueller M., Ganci F., Fallisch A., Lettenmeier P., Friedrich K.A et al..  2019.  Initial approaches in benchmarking and round robin testing for proton exchange membrane water electrolyzers. International Journal of Hydrogen Energy. 44(18):9174-9187.
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.