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LSCF 1 Surface 1 active sites 1 atomic force microscopy 1 coordination number 1 defect 1 electrochemically active sites 1 mixed electron and ion conductor 1 morphology 1 percolation theory 1 reactivity 1 solid oxide fuel cell 1 three-phase-boundary sites 1
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Free 1 Undetermined 1
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Article 2
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Chen, Daifen 1 GRIBKOV, B. A. 1 He, Huanhuan 1 IGNATOV, S. K. 1 KRUGLOVA, M. V. 1 MASLENNIKOV, S. V. 1 Ni, Meng 1 PANTELEEV, S. V. 1 SPIRINA, I. V. 1 VDOVICHEV, S. N. 1 Wang, Hanzhi 1 Zhang, Donghui 1
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Energies 1 Surface Review and Letters (SRL) 1
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Percolation Theory in Solid Oxide Fuel Cell Composite Electrodes with a Mixed Electronic and Ionic Conductor
Chen, Daifen; He, Huanhuan; Zhang, Donghui; Wang, Hanzhi; … - In: Energies 6 (2013) 3, pp. 1632-1656
Percolation theory is generalized to predict the effective properties of specific solid oxide fuel cell composite electrodes, which consist of a pure ion conducting material (e.g., YSZ or GDC) and a mixed electron and ion conducting material (e.g., LSCF, LSCM or CeO<sub>2</sub>). The investigated...
Persistent link: https://www.econbiz.de/10011030834
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EVOLUTION OF THE COPPER SURFACE IN THE COURSE OF OXIDATION BY CCl4–L (L=THF, DMF, DMSO): SCANNING PROBE MICROSCOPE STUDY
PANTELEEV, S. V.; MASLENNIKOV, S. V.; IGNATOV, S. K.; … - In: Surface Review and Letters (SRL) 20 (2013) 03, pp. 1350023-1
The evolution of compact surface of the 100 nm copper film deposited on the glass-ceramics doped with vanadium coating in the course of the oxidation by the CCl4–L (L = dimethylformamide (DMF), tetrahydrofuran (THF), dimethylsulfoxide (DMSO), CCl4 concentration ≈ 1 mol/L) was studied by...
Persistent link: https://www.econbiz.de/10011011161
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