Biblio

Export 96 results:
Author Keyword [ Title(Desc)] Type Year
Filters: First Letter Of Last Name is K  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
P
Motz A.R, Li D., Keane A., Manriquez L.D, Park E.J, Maurya S., Chung H., Fujimoto C., Jeon J., Pagels M.K et al..  2021.  Performance and Durability of Anion Exchange Membrane Water Electrolyzers Using Down-Selected Polymer Electrolytes. Journal of Materials Chemistry A. :22670-22683.
Motz A.R, Li D., Keane A., Manriquez L.D, Park E.J, Maurya S., Chung H., Fujimoto C., Jeon J., Pagels M.K et al..  2021.  Performance and Durability of Anion Exchange Membrane Water Electrolyzers Using Down-Selected Polymer Electrolytes. Journal of Materials Chemistry A. :22670-22683.
Bork A.H, Kubicek M., Struzik M., Rupp J.LM.  2015.  Perovskite La0.6Sr0.4Cr1−xCoxO3−δ solid solutions for solar-thermochemical fuel production: strategies to lower the operation temperature. J. Mater. Chem. A. 3(30):15546-15557.
Kubicek M, Bork AH, Rupp JLM.  2017.  Perovskite oxides – a review on a versatile material class for solar-to-fuel conversion processes. Journal of Materials Chemistry A. 5(24):11983-12000.
Barcellos DR, Coury FG, Emery A, Sanders M, Tong J, McDaniel A, Wolverton C, Kaufman M, O'Hayre R.  2019.  Phase Identification of the Layered Perovskite CexSr2–xMnO4 and Application for Solar Thermochemical Water Splitting. Inorganic Chemistry. 58(12):7705-7714.
Li D, Matanovic I, Lee AS, Park EJoo, Fujimoto C, Chung HT, Kim YSeung.  2019.  Phenyl Oxidation Impacts the Durability of Alkaline Membrane Water Electrolyzer. ACS Applied Materials & Interfaces. 11(10):9696-9701.
R
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.
Dimitrakis D.A, Tsongidis N.I, Konstandopoulos A.G.  2016.  Reduction enthalpy and charge distribution of substituted ferrites and doped ceria for thermochemical water and carbon dioxide splitting with DFT+U. Phys. Chem. Chem. Phys.. 18(34):23587-23595.
Miller JEdward, Allendorf MD, Ambrosini A, Chen KShuang, Coker ENicholas, Dedrick DE, B. J.Diver Rich, E. J.Hogan Roy, Ermanoski I, Johnson TAlan et al..  2012.  Reimagining liquid transportation fuels : Sunshine to Petrol..
Lovesey S.W, Knight K.S, Balcar E..  0.  Resonant 1 s → 3 d x-ray Bragg diffraction and structure factors for transition-metal compounds. Physical Review B. 64(5)
Grenier S., Thomas K.J., Kim Y-J, Hill J.P., Gibbs D, Kiryukhin V., Tokura Y., Tomioka Y., Casa D., Gog T. et al..  0.  Resonant X-ray scattering as a probe of the valence and magnetic ground state and excitations in Pr0.6Ca0.4MnO3. Physica B: Condensed Matter. 345(1-4):6-10.
Grenier S., Thomas K.J., Kim Y-J, Hill J.P., Gibbs D, Kiryukhin V., Tokura Y., Tomioka Y., Casa D., Gog T. et al..  0.  Resonant X-ray scattering as a probe of the valence and magnetic ground state and excitations in Pr0.6Ca0.4MnO3. Physica B: Condensed Matter. 345(1-4):6-10.
S
Kolb GJ, Diver RB.  2008.  Screening Analysis of Solar Thermochemical Hydrogen Concepts.
Liu Y, Wu J, Hackenberg KP, Y. Wang M, Yang Y, Keyshar K, Gu J, Ogitsu T, Vajtai R, Lou J et al..  2017.  Self-optimizing, highly surface-active layered metal dichalcogenide catalysts for hydrogen evolution. Nature Energy. 6:17127.
Kawaguchi T, Fukuda K, Matsubara E.  0.  Site- and phase-selective x-ray absorption spectroscopy based on phase-retrieval calculation. Journal of Physics: Condensed Matter. 29(11):113002.
Pagliaro M., Konstandopoulos A.G, Ciriminna R., Palmisano G..  2010.  Solar hydrogen: fuel of the near future. Energy & Environmental Science. 3(3):279–287.
Docao S, Koirala ARaj, Kim MGyu, Hwang IChul, Song MKyung, Yoon KByung.  2017.  Solar photochemical–thermal water splitting at 140 °C with Cu-loaded TiO 2. Energy & Environmental Science. 10(2):628-640.
Docao S, Koirala ARaj, Kim MGyu, Hwang IChul, Song MKyung, Yoon KByung.  2017.  Solar photochemical–thermal water splitting at 140 °C with Cu-loaded TiO 2. Energy & Environmental Science. 10(2):628-640.
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.
Stuart PA, Unno T, Kilner JA, Skinner SJ.  0.  Solid oxide proton conducting steam electrolysers. Solid State Ionics. 179(21):1120-1124.
Liang W, Roelofs TA, Cinco RM, Rompel A, Latimer MJ, Yu WO, Sauer K, Klein MP, Yachandra VK.  0.  Structural Change of the Mn Cluster during the S2→S3 State Transition of the Oxygen-Evolving Complex of Photosystem II. Does It Reflect the Onset of Water/Substrate Oxidation? Determination by Mn X-ray Absorption Spectroscopy Journal of the American Chemical Society. 122(14):3399-3412.
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.
Laboratories ASandia Nat, Miller JE, Diver, Jr. RB, Siegel NPhillip, Coker E, Ambrosini A, Dedrick DE, Allendorf MD, McDaniel AH, Kellogg GL et al..  0.  Sunshine to Petrol: A Metal Oxide-Based Thermochemical Route to Solar Fuels.
Knoblauch N, Dörrer L, Fielitz P, Schmücker M, Borchardt G.  2015.  Surface controlled reduction kinetics of nominally undoped polycrystalline CeO 2. Phys. Chem. Chem. Phys.. 17(8):5849-5860.