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Electrolysis of CO2 and H2O

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Electrolysis of CO2 and H2O ( electrolysis-co2-and-h2o )

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Chapter 1. Introduction 15 identify material phases. X-ray diffraction (XRD) and 4-point DC conductivity tests were additionally employed to characterize phase and conductivity, respectively, in Chapter 6. The conductivity tests were also used to indirectly study phase stability. 1.3. References 1. Jensen SH, Hjelm J, Hagen A, and Mogensen M, Electrochemical impedance spectroscopy as diagnostic tool, in Handbook of Fuel Cells – Fundamentals, Technology and Applications, W. Vielstich, H. Yokokawa, and H.A. Gasteiger, Editors. (2009), John Wiley & Sons, Ltd. 2. Primdahl S and Mogensen M, Gas conversion impedance: A test geometry effect in characterization of solid oxide fuel cell anodes. Journal of the Electrochemical Society, (1998). 145(7): p. 2431-2438. 3. Primdahl S and Mogensen M, Gas diffusion impedance in characterization of solid oxide fuel cell anodes. Journal of the Electrochemical Society, (1999). 146(8): p. 2827-2833. 4. Jacobsen T, Hendriksen PV, and Koch S, Diffusion and conversion impedance in solid oxide fuel cells. Electrochimica Acta, (2008). 53(25): p. 7500-7508. 5. Barsoukov E and Macdonald JR, Impedance Spectroscopy: Theory, Experiment, and Applications. 2 ed. (2005): Wiley-Interscience. 616. 6. Agarwal P, Orazem ME, and Garcia-Rubio LH, Measurement Models for Electrochemical Impedance Spectroscopy. Journal of the Electrochemical Society, (1992). 139(7): p. 1917-1927. 7. Jensen SH, Hauch A, Hendriksen PV, Mogensen M, Bonanos N, and Jacobsen T, A method to separate process contributions in impedance spectra by variation of test conditions. Journal of the Electrochemical Society, (2007). 154(12): p. B1325-B1330-B1325-B1330. 8. Smirnova AL, Ellwood KR, and Crosbie GM, Application of Fourier-Based Transforms to Impedance Spectra of Small-Diameter Tubular Solid Oxide Fuel Cells. Journal of the Electrochemical Society, (2001). 148(6): p. A610-A615. 9. Schichlein H, Müller AC, Voigts M, Krügel A, and Ivers-Tiffée E, Deconvolution of electrochemical impedance spectra for the identification of electrode reaction mechanisms in solid oxide fuel cells. Journal of Applied Electrochemistry, (2002). 32(8): p. 875-882. 10. Leonide A, Sonn V, Weber A, and Ivers-Tiffee E, Evaluation and modeling of the cell resistance in anode-supported solid oxide fuel cells. Journal of the Electrochemical Society, (2008). 155(1): p. B36- B41-B36-B41. 11. Orazem ME and Tribollet B, Electrochemical Impedance Spectroscopy. (2008): Wiley-Interscience. 560.

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