Biblio

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2017
Nikolaidis P, Poullikkas A.  2017.  A comparative overview of hydrogen production processes. Renewable and Sustainable Energy Reviews. 67:597-611.
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Nishida S, Kobayashi S, Kumamoto A, Ikeno H, Mizoguchi T, Tanaka I, Ikuhara Y, Yamamoto T.  0.  Effect of local coordination of Mn on Mn-L-2,L-3 edge electron energy loss spectrum. JOURNAL OF APPLIED PHYSICS. 114(5):054906.
Ito H, Maeda T, Nakano A, Hwang CMin, Ishida M, Kato A, Yoshida T.  0.  Experimental study on porous current collectors of PEM electrolyzers. International Journal of Hydrogen Energy. 37(9):7418-7428.
S. Naghavi S, Emery AA, Hansen HA, Zhou F, Ozolins V, Wolverton C.  0.  Giant onsite electronic entropy enhances the performance of ceria for water splitting. Nature Communications. 8(1)
Roeb M, Neises M, Monnerie N, Call F, Simon H, Sattler C, Schmücker M, Pitz-Paal R.  0.  Materials-Related Aspects of Thermochemical Water and Carbon Dioxide Splitting: A Review. Materials. 5(12):2015-2054.
Wang DRita, Shah DB, Maslyn JA, Loo WS, Wujcik KH, Nelson EJ, Latimer MJ, Feng J, Prendergast D, Pascal TA et al..  0.  Rate Constants of Electrochemical Reactions in a Lithium-Sulfur Cell Determined by Operando X-ray Absorption Spectroscopy. Journal of The Electrochemical Society. 165(14):A3487-A3495.
Kaneko H, Miura T, Ishihara H, Taku S, Yokoyama T, Nakajima H, Tamaura Y.  0.  Reactive ceramics of CeO2–MOx (M=Mn, Fe, Ni, Cu) for H2 generation by two-step water splitting using concentrated solar thermal energy. Energy. 32(5):656-663.
Abanades S, Charvin P, Flamant G, Neveu P.  0.  Screening of water-splitting thermochemical cycles potentially attractive for hydrogen production by concentrated solar energy. Energy. 31(14):2805-2822.
Agrafiotis C., Roeb M., Konstandopoulos A.G., Nalbandian L., Zaspalis V.T., Sattler C., Stobbe P., Steele A.M..  0.  Solar water splitting for hydrogen production with monolithic reactors. Solar Energy. 79(4):409-421.
Spanos I, Auer AA, Neugebauer S, Deng X, Tüysüz H, Schlögl R.  0.  Standardized Benchmarking of Water Splitting Catalysts in a Combined Electrochemical Flow Cell/Inductively Coupled Plasma–Optical Emission Spectrometry (ICP-OES) Setup. ACS Catalysis. 7(6):3768-3778.
Ni M, Leung MKH, Leung DYC.  0.  Technological development of hydrogen production by solid oxide electrolyzer cell (SOEC). International Journal of Hydrogen Energy. 33(9):2337-2354.
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.
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.