The Effect of Uranium Cations on the Redox Properties of CeO2 Within the Context of Hydrogen Production from Water
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Chemistry,Catalysis
Link
http://link.springer.com/content/pdf/10.1007/s11244-014-0353-x.pdf
Reference37 articles.
1. Abanades S, Legal A, Cordier A, Peraudeau G, Flamant G, Julbe A (2010) Investigation of reactive cerium-based oxides for H2 production by thermochemical two-step water-splitting. J Mater Sci 45:4163–4173
2. Zhu X, Wang H, Wei Y, Li K, Cheng X (2011) Hydrogen and syngas production from two-step steam reforming of methane using CeO2 as oxygen carrier. J Nat Gas Chem 20:281–286
3. Al-Salik Y, Al-Shankiti I, Idriss H (2013) Core level spectroscopy of oxidized and reduced CexU1−xO2 materials. J. Electron Spectrosc Relat Phenom 194:66–73
4. Al-Shankiti I, Al-Otaibi F, Al-Salik Y, Idriss H (2013) Solar thermal hydrogen production from water over modified CeO2 materials. Top Catal 56:1129–1138
5. Chueh WC, Falter C, Abbott M, Scipio D, Furler P et al (2010) High-flux solar-driven thermochemical dissociation of CO2 and H2O using nonstoichiometric ceria. Science 330:1797–1801
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