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André Weber

Dr.-Ing. André Weber

Akademischer Oberrat
Batterien und Brennstoffzellen
Sprechstunden: nach Vereinbarung
Raum: 314
Tel.: +49 721 608-47572
Fax: +49 721 608-47492
andre weberPrb8∂kit edu

Institut für Angewandte Materialien -
Werkstoffe der Elektrotechnik (IAM-WET)
Adenauerring 20b
Gebäude 50.40
D-76131 Karlsruhe



Forschung

 

Lehre

Lehrveranstaltungen
LVNr. Titel Typ Ort Zeit Semester
2304214 Vorlesung Sommersemester
2304217 Vorlesung

Geb. 50.40, 3.OG, IAM-WET-Seminarraum

Sommersemester
23235 Praktikum

Geb. 50.40, 3. OG

Wintersemester
23228 + 23229 Vorlesung + Übung

Geb. 50.31, Bauingenieure Hörsaal 107 (HS 107)

Wintersemester
2304227 Seminar

Geb. 50.40, 3.OG, IAM-WET-Seminarraum

ganzjährig
2304226 Seminar

Geb. 50.40, 3.OG, IAM-WET-Seminarraum

ganzjährig
23211 lecture winter semester


Veröffentlichungen

IDs & Profile

  http://orcid.org/0000-0003-1744-3732

  http://www.scopus.com/authid/detail.uri?authorId=7403706422

  http://www.researcherid.com/rid/N-2611-2015

  https://www.researchgate.net/profile/Andre_Weber5

  https://scholar.google.de/citations?user=IGECnVQAAAAJ&hl=de

 

Buchbeiträge

  [I]        E. Ivers-Tiffée, A. Weber and H. Schichlein, "O2-reduction at high temperatures: SOFC", in W. Vielstich, H. A. Gasteiger, and A. Lamm (Eds.), Handbook of Fuel Cells - Fundamentals, Technology and Applications, Chichester: John Wiley & Sons Ltd, pp. 587-600 (2003).

   [II]       E. Ivers-Tiffée, A. Weber and H. Schichlein, "Electrochemical impedance spectroscopy", in W. Vielstich, H. A. Gasteiger, and A. Lamm (Eds.), Handbook of Fuel Cells - Fundamentals, Technology and Applications, Chichester: John Wiley & Sons Ltd, pp. 220-235 (2003).

  [III]      A. Weber, "Solid Oxide Fuel Cells: Life-Limiting Considerations", in J. Garche (Ed.), Encyclopedia of Electrochemical Power Sources, Amsterdam: Elsevier, pp. 120-134 (2009).

  [IV]      E. Ivers-Tiffée, A. Leonide, H. Schichlein, V. Sonn and A. Weber, "Impedance Spectroscopy for High-Temperature Fuel Cells", in D. Stolten and B. Emonts (Eds.), Fuel Cell Science and Engineering, Weinheim: Wiley-VCH Verlag, pp. 441-467 (2012).

 

Veröffentlichungen in Peer-Reviewed Journals

        [1]    A. Weber, R. Männer, R. Waser and E. Ivers-Tiffée, "Interaction between microstructure and electrical properties of screen printed cathodes in SOFC single cells", Denki Kagaku 64, pp. 582-589 (1996).

        [2]    T. Horita, K. Yamaji, N. Sakai, H. Yokokawa, A. Weber and E. Ivers-Tiffée, "Stability at La0.6Sr0.4CoO3-d cathode/La0.8Sr0.2Ga0.8Mg0.2O2.8 electrolyte interface under current flow for solid oxide fuel cells", Solid State Ionics 133, pp. 143-152 (2000).

        [3]    D. Herbstritt, A. Weber and E. Ivers-Tiffée, "Modelling and DC-polarisation of a three dimensional electrode/electrolyte interface", Journal of the European Ceramic Society 21, pp. 1813-1816 (2001).

        [4]    T. Horita, K. Yamaji, N. Sakai, H. Yokokawa, A. Weber and E. Ivers-Tiffée, "Electrode reaction of La1-xSrxCoO3-d cathodes on La0.8Sr0.2Ga0.8Mg0.2O3-y electrolyte in solid oxide fuel cells", J. Electrochem. Soc. 148, p. A456-A462 (2001).

        [5]    T. Horita, K. Yamaji, N. Sakai, H. Yokokawa, A. Weber and E. Ivers-Tiffée, "Oxygen reduction mechanism at porous La1-xSrxCoO3-d cathodes La0.8Sr0.2Ga0.8Mg0.2O2.8 electrolyte interface for solid oxide fuel cells", Electrochim Acta 46, pp. 1837-1845 (2001).

        [6]    E. Ivers-Tiffée, A. Weber and D. Herbstritt, "Materials and technologies for SOFC-components", Journal of the European Ceramic Society 21, pp. 1805-1811 (2001).

        [7]    A. Weber, B. Sauer, A. C. Müller, D. Herbstritt and E. Ivers-Tiffée, "Oxidation of H2, CO and methane in SOFCs with Ni/YSZ-cermet anodes", Solid State Ionics 152, pp. 543-550 (2002).

        [8]    D. Fouquet, A. C. Müller, A. Weber and E. Ivers-Tiffée, "Kinetics of Oxidation and Reduction of Ni/YSZ Cermets", Ionics 9, pp. 103-108 (2003).

        [9]    E. Ivers-Tiffée, A. Weber, K. Schmid and V. Krebs, "Macroscale modeling of cathode formation in SOFC", Solid State Ionics 174, pp. 223-232 (2004).

      [10]    A. Weber and E. Ivers-Tiffée, "Materials and concepts for solid oxide fuel cells (SOFCs) in stationary and mobile applications", J. Power Sources 127, pp. 273-283 (2004).

      [11]    P. König, A. Weber and E. Ivers-Tiffée, "Modeling and Simulation Approach for Standardized Testing and Analysis of PEMFC CHP Systems", ECS Trans. 1, pp. 453-462 (2005).

      [12]    P. König, A. Weber, N. Lewald, T. Aicher, L. Jorissen, E. Ivers-Tiffée, R. Szolak, M. Brendel and J. Kaczerowski, "Testing and model-aided analysis of a 2 kW(el) PEMFC CHP-system", J. Power Sources 145, pp. 327-335 (2005).

      [13]    B. Butz, P. Kruse, H. Störmer, D. Gerthsen, A. C. Müller, A. Weber and E. Ivers-Tiffée, "Correlation between microstructure and degradation in conductivity for cubic Y2O3-doped ZrO2", Solid State Ionics 177, pp. 3275-3284 (2006).

      [14]    H. Timmermann, D. Fouquet, A. Weber, E. Ivers-Tiffée, U. Hennings and R. Reimert, "Internal reforming of methane at Ni/YSZ and Ni/CGO SOFC cermet anodes", Fuel Cells 6, pp. 307-313 (2006).

      [15]    H. Timmermann, U. Hennings, A. Weber, E. Ivers-Tiffée and R. Reimert, "Modeling of the methane conversion at a Ni/gadolinium doped ceroxide (CGO)-anode of the high temperature solid oxide fuel cell (SOFC)", Chemie Ingenieur Technik 78, pp. 1275-1276 (2006).

      [16]    P. König, A. Weber, N. Lewald, T. Aicher, L. Jörissen and E. Ivers-Tiffée, "Model-aided testing of a PEMFC CHP system", Fuel Cells 7, pp. 70-77 (2007).

      [17]    A. Leonide, V. Sonn, A. Weber and E. Ivers-Tiffée, "Evaluation and Modelling of the Cell Resistance in Anode Supported Solid Oxide Fuel Cells", ECS Trans. 7, pp. 521-531 (2007).

      [18]    B. Rüger, A. Weber and E. Ivers-Tiffée, "3D-Modelling and Performance Evaluation of Mixed Conducting (MIEC) Cathodes", ECS Trans. 7, pp. 2065-2074 (2007).

      [19]    H. Timmermann, W. Sawady, D. Campbell, A. Weber, R. Reimert and E. Ivers-Tiffée, "Coke formation in hydrocarbons containing fuel gas and effects on SOFC degradation phenomena", ECS Trans. 7, pp. 1429-1435 (2007).

      [20]    L. Dieterle, D. Bach, R. Schneider, H. Störmer, D. Gerthsen, U. Guntow, E. Ivers-Tiffée, A. Weber, C. Peters and H. Yokokawa, "Structural and chemical properties of nanocrystalline La0.5Sr0.5CoO3-d layers on yttria-stabilized zirconia analyzed by transmission electron microscopy", Journal of Materials Science 43, pp. 3135-3143 (2008).

      [21]    A. Leonide, V. Sonn, A. Weber and E. Ivers-Tiffée, "Evaluation and modeling of the cell resistance in anode-supported solid oxide fuel cells", J. Electrochem. Soc. 155, p. B36-B41 (2008).

      [22]    C. Peters, A. Weber and E. Ivers-Tiffée, "Nanoscaled (La0.5Sr0.5)CoO3-d Thin Film Cathodes for SOFC Application at 500°C < T < 700°C", J. Electrochem. Soc. 155, p. B730-B737 (2008).

      [23]    H. Timmermann, W. Sawady, D. Campbell, A. Weber, R. Reimert and E. Ivers-Tiffée, "Coke Formation and Degradation in SOFC Operation with a Model reformate from liquid hydrocarbons", J. Electrochem. Soc. 155, p. B356-B359 (2008).

      [24]    C. Endler, A. Leonide, A. Weber, E. Ivers-Tiffée and F. Tietz, "Long-Term Study of MIEC Cathodes for intermediate temperature Solid Oxide Fuel Cells", ECS Trans. 25, pp. 2381-2390 (2009).

      [25]    D. Klotz, A. Weber and E. Ivers-Tiffée, "Dynamic Electrochemical Model for SOFC-Stacks", ECS Trans. 25, pp. 1331-1340 (2009).

      [26]    M. Kornely, A. Leonide, A. Weber and E. Ivers-Tiffée, "Impact of Flowfield Design on Solid Oxide Fuel Cell Performance", ECS Trans. 25, pp. 815-824 (2009).

      [27]    A. Leonide, B. Rüger, A. Weber, W. A. Meulenberg and E. Ivers-Tiffée, "Performance Study of Alternative (La,Sr)FeO3-d and (La,Sr)(Co,Fe)O3-d MIEC Cathode Compositions", ECS Trans. 25, pp. 2487-2496 (2009).

      [28]    C. Peters, A. Weber, B. Butz, D. Gerthsen and E. Ivers-Tiffée, "Grain-Size Effects in YSZ Thin-Film Electrolytes", J. Am. Ceram. Soc. 92, pp. 2017-2024 (2009).

      [29]    B. Rüger, J. Joos, T. Carraro, A. Weber and E. Ivers-Tiffée, "3D Electrode Microstructure Reconstruction and Modelling", ECS Trans. 25, pp. 1211-1220 (2009).

      [30]    H. Störmer, A. Weber, V. Fischer, E. Ivers-Tiffée and D. Gerthsen, "Anodically formed oxide films on niobium: Microstructural and electrical properties", Journal of the European Ceramic Society 29, pp. 1743-1753 (2009).

      [31]    A. Utz, H. Störmer, A. Leonide, A. Weber and E. Ivers-Tiffée, "Degradation Effects of Ni Patterned Anodes in H2/H2O Atmosphere", ECS Trans. 25, pp. 2013-2021 (2009).

      [32]    W. G. Bessler, M. Vogler, H. Störmer, D. Gerthsen, A. Utz, A. Weber and E. Ivers-Tiffée, "Model Anodes and Anode Models for Understanding the Mechanism of Hydrogen Oxidation in Solid Oxide Fuel Cells", Phys. Chem. Chem. Phys. 12, pp. 13888-13903 (2010).

      [33]    C. Endler, A. Leonide, B. Rüger, A. Weber and E. Ivers-Tiffée, "Oxygen Surface Exchange and Bulk Diffusion Coefficients Evaluated from Porous Mixed Ionic-Electronic Conducting Cathodes", ECS Trans. 28, pp. 71-80 (2010).

      [34]    C. Endler, A. Leonide, A. Weber, F. Tietz and E. Ivers-Tiffée, "Time-Dependent Electrode Performance Changes in Intermediate Temperature Solid Oxide Fuel Cells", J. Electrochem. Soc. 157, p. B292-B298 (2010).

      [35]    M. Ettler, H. Timmermann, J. Malzbender, A. Weber and N. H. Menzler, "Durability of Ni anodes during reoxidation cycles", J. Power Sources 195, pp. 5452-5467 (2010).

      [36]    J. Joos, B. Rüger, T. Carraro, A. Weber and E. Ivers-Tiffée, "Electrode Reconstruction by FIB/SEM and Microstructure Modeling", ECS Trans. 28, pp. 81-91 (2010).

      [37]    A. Kromp, A. Leonide, H. Timmermann, A. Weber and E. Ivers-Tiffée, "Internal Reforming Kinetics in SOFC-Anodes", ECS Trans. 28, pp. 205-215 (2010).

      [38]    A. Leonide, B. Rüger, A. Weber, W. A. Meulenberg and E. Ivers-Tiffée, "Impedance Study of Alternative (La,Sr)FeO3-d and (La,Sr)(Co,Fe)O3-d MIEC Cathode Compositions", J. Electrochem. Soc. 157, p. B234-B239 (2010).

      [39]    A. Utz, H. Störmer, A. Leonide, A. Weber and E. Ivers-Tiffée, "Degradation and Relaxation Effects of Ni Patterned Anodes in H2/H2O Atmosphere", J. Electrochem. Soc. 157, p. B920-B930 (2010).

      [40]    P. Blennow, J. Hjelm, T. Klemensoe, S. Ramousse, A. Kromp, A. Leonide and A. Weber, "Manufacturing and Characterization of Metal Supported Solid Oxide Fuel Cells", J. Power Sources 196, pp. 7117-7125 (2011).

      [41]    C. Endler-Schuck, A. Leonide, A. Weber, S. Uhlenbruck, F. Tietz and E. Ivers-Tiffée, "Performance analysis of mixed ionic-electronic conducting cathodes in anode supported cells", J. Power Sources 196, pp. 7257-7262 (2011).

      [42]    C. Endler-Schuck, A. Weber, E. Ivers-Tiffée, U. Guntow, J. Ernst and J. Ruska, "Nanoscale Gd-doped CeO2 Buffer Layer for a High Performance Solid Oxide Fuel Cell", Journal of Fuel Cell Science and Technology 8, pp. 041001-1-041001-5 (2011).

      [43]    Th. Franco, M. Haydn, R. Mücke, A. Weber, M. Rüttinger, O. Büchler, S. Uhlenbruck, N. H. Menzler, A. Venskutonis and L. S. Sigl, "Development of Metal-Supported Solid Oxide Fuel Cells", ECS Trans. 35, pp. 343-349 (2011).

      [44]    E. Ivers-Tiffée, J. Hayd, D. Klotz, A. Leonide, F. Han and A. Weber, "Performance Analysis and Development Strategies for Solid Oxide Fuel Cells", ECS Trans. 35, pp. 1965-1973 (2011).

      [45]    J. Joos, T. Carraro, A. Weber and E. Ivers-Tiffée, "Reconstruction of porous electrodes by FIB/SEM for detailed microstructure modeling", J. Power Sources 196, pp. 7302-7307 (2011).

      [46]    J. Joos, T. Carraro, M. Ender, B. Rüger, A. Weber and E. Ivers-Tiffée, "Detailed Microstructure Analysis and 3D Simulations of Porous Electrodes", ECS Trans. 35, pp. 2357-2368 (2011).

      [47]    C. Kind, A. Weber and C. Feldmann, "Easy access to CuO nanoparticles and porous copper electrodes with high oxidation stability and high conductivity", J. Mater. Chem. 22, pp. 987-993 (2011).

      [48]    M. Kornely, A. Neumann, N. Menzler, A. Leonide, A. Weber and E. Ivers-Tiffée, "Degradation of anode supported cell (ASC) performance by Cr-poisoning", J. Power Sources 196, pp. 7203-7208 (2011).

      [49]    M. Kornely, A. Leonide, A. Weber and E. Ivers-Tiffée, "Performance limiting factors in anode-supported cells originating from metallic interconnector design", J. Power Sources 196, pp. 7209-7216 (2011).

      [50]    A. Kromp, A. Leonide, A. Weber and E. Ivers-Tiffée, "Hydrogen Oxidation Kinetics in Reformate-Fuelled Anode Supported SOFC", ECS Trans. 35, pp. 665-678 (2011).

      [51]    A. Kromp, A. Leonide, A. Weber and E. Ivers-Tiffée, "Electrochemical Analysis of Reformate-Fuelled Anode Supported SOFC", J. Electrochem. Soc. 158, p. B980-B986 (2011).

      [52]    A. Leonide, S. Hansmann, A. Weber and E. Ivers-Tiffée, "Performance simulation of current/voltage-characteristics for SOFC single cell by means of detailed impedance analysis", J. Power Sources 196, pp. 7343-7346 (2011).

      [53]    A. Leonide, A. Weber and E. Ivers-Tiffée, "Electrochemical Analysis of Biogas Fueled Anode Supported SOFC", ECS Trans. 35, pp. 2961-2968 (2011).

      [54]    A. Utz, J. Joos, A. Weber and E. Ivers-Tiffée, "Electrochemical Oxidation at SOFC Anodes: Comparison of Patterned Ni Anodes and Technical Ni/8YSZ Cermet Anodes", ECS Trans. 35, pp. 1669-1682 (2011).

      [55]    A. Utz, H. Störmer, D. Gerthsen, A. Weber and E. Ivers-Tiffée, "Microstructure Stability Studies of Ni Patterned Anodes for SOFC", Solid State Ionics 192, pp. 565-570 (2011).

      [56]    A. Utz, A. Leonide, A. Weber and E. Ivers-Tiffée, "Studying the CO/CO2 Characteristics of SOFC Anodes by Means of Ni Patterned Anodes", J. Power Sources 196, pp. 7217-7224 (2011).

      [57]    A. Weber, A. Utz, J. Joos, E. Ivers-Tiffée, H. Störmer, D. Gerthsen, V. Yurkiv, H.-R. Volpp and W. G. Bessler, "Electrooxidation of Reformate Gases at Model Anodes", ECS Trans. 35, pp. 1513-1528 (2011).

      [58]    V. Yurkiv, A. Utz, A. Weber, E. Ivers-Tiffée, H. R. Volpp and W. G. Bessler, "Elementary kinetic numerical simulation of electrochemical CO oxidation on NI/YSZ pattern anodes", ECS Trans. 35, pp. 1743-1751 (2011).

      [59]    M. Kornely, A. Neumann, N. H. Menzler, A. Weber and E. Ivers-Tiffée, "Degradation of solid oxide fuel cell performance by Cr-poisoning", ECS Trans. 35, pp. 2009-2017 (2011).

      [60]    V. Yurkiv, A. Utz, A. Weber, E. Ivers-Tiffée, H. R. Volpp and W. G. Bessler, "Elementary kinetic modeling and experimental validation of electrochemical CO oxidation on Ni/YSZ pattern anodes", Electrochim Acta 59, pp. 573-580 (2012).

      [61]    T. Carraro, J. Joos, B. Rüger, A. Weber and E. Ivers-Tiffée, "3D finite element model for reconstructed mixed-conducting cathodes: II. Parameter sensitivity analysis", Electrochim Acta 77, pp. 309-314 (2012).

      [62]    T. Carraro, J. Joos, B. Rüger, A. Weber and E. Ivers-Tiffée, "3D finite element model for reconstructed mixed-conducting cathodes: I. Performance quantification", Electrochim Acta 77, pp. 315-323 (2012).

      [63]    M. Ender, A. Weber and E. Ivers-Tiffée, "Analysis of Three-Electrode Setups for AC-Impedance Measurements on Lithium-Ion Cells by FEM simulations", J. Electrochem. Soc. 159, p. A128-A136 (2012).

      [64]    J. Joos, M. Ender, T. Carraro, A. Weber and E. Ivers-Tiffée, "Representative volume element size for accurate solid oxide fuel cell cathode reconstructions from focused ion beam tomography data", Electrochim Acta 82, pp. 268-276 (2012).

      [65]    D. Klotz, J. C. Njodzefon, A. Weber and E. Ivers-Tiffée, "Current-Voltage and Temperature Characteristics of Anode Supported Solid Oxide Electrolyzer Cells (SOEC)", ECS Trans. 45, pp. 523-530 (2012).

      [66]    D. Klotz, J. Szász, A. Weber and E. Ivers-Tiffée, "Nano-Structuring of SOFC Anodes by Reverse Current Treatment", ECS Trans. 45, pp. 241-249 (2012).

      [67]    D. Klotz, J. P. Schmidt, A. Kromp, A. Weber and E. Ivers-Tiffée, "The Distribution of Relaxation Times as Beneficial Tool for Equivalent Circuit Modeling of Fuel Cells and Batteries", ECS Trans. 41, pp. 25-33 (2012).

      [68]    A. Kromp, S. Dierickx, A. Leonide, A. Weber and E. Ivers-Tiffée, "Electrochemical Analysis of Sulphur-Poisoning in Anode-Supported SOFCs under Reformate Operation", ECS Trans. 41, pp. 161-169 (2012).

      [69]    A. Kromp, S. Dierickx, A. Leonide, A. Weber and E. Ivers-Tiffée, "Electrochemical Analysis of Sulfur-Poisoning in Anode Supported SOFCs Fuelled with a Model Reformate", J. Electrochem. Soc. 159, p. B597-B601 (2012).

      [70]    J.-C. Njodzefon, D. Klotz, A. Leonide, A. Kromp, A. Weber and E. Ivers-Tiffée, "Electrochemical Studies on Anode Supported Solid Oxide Electrolyzer Cells (SOEC)", ECS Trans. 41, pp. 113-122 (2012).

      [71]    C. Kind, A. Weber and C. Feldmann, "Easy access to Cu 0 nanoparticles and porous copper electrodes with high oxidation stability and high conductivity", J. Mater. Chem. 22, pp. 987-993 (2012).

      [72]    A. Häffelin, J. Joos, M. Ender, A. Weber and E. Ivers-Tiffée, "Transient 3D Impedance Model for mixed-conducting SOFC Cathodes", ECS Trans. 45, pp. 313-325 (2012).

      [73]    M. Ender, A. Weber and E. Ivers-Tiffée, "A novel method for measuring the effective conductivity and the contact resistance of porous electrodes for lithium-ion batteries", Electrochemistry Communications 34, pp. 130-133 (2013).

      [74]    T. Franco, M. Haydn, A. Weber, W. Schafbauer, L. Blum, U. Packbier, D. Roehrens, N. H. Menzler, J. Rechberger, A. Venskutonis, L. S. Sigl and H. P. Buchkremer, "The Status of Metal-Supported SOFC Development and Industrialization at Plansee", ECS Trans. 57, pp. 471-480 (2013).

      [75]    H. Geisler, M. Kornely, A. Weber and Ivers-Tiffée Éllen, "Enhancing SOFC-Stack Performance by Model-based Adaptation of Cathode Gas Transport Conditions", ECS Trans. 57, pp. 2871-2881 (2013).

      [76]    H. Geisler, A. Kromp, S. Hirn, A. Weber and E. Ivers-Tiffée, "Model Based Interpretation of Coupled Gas Conversion and Diffusion in SOFC-Anodes", ECS Trans. 57, pp. 2691-2704 (2013).

      [77]    J. Illig, J. P. Schmidt, M. Weiss, A. Weber and E. Ivers-Tiffée, "Understanding the Impedance Spectrum of 18650 LiFePO4 Cells", J. Power Sources 239, pp. 670-679 (2013).

      [78]    D. Klotz, J. P. Schmidt, A. Weber and E. Ivers-Tiffée, "Static Performance Model for ASCs with different Sizes and its Experimental Validation", ECS Trans. 57, pp. 2849-2856 (2013).

      [79]    M. Kornely, N. H. Menzler, A. Weber and E. Ivers-Tiffée, "Degradation of a High Performance SOFC Cathode by Cr-Poisoning at OCV-Conditions", Fuel Cells 00, pp. 1-5 (2013).

      [80]    A. Kromp, J. Nielsen, P. Blennow, T. Klemenso and A. Weber, "Break-down of Losses in High Performing Metal-Supported Solid Oxide Fuel Cells", Fuel Cells 13, pp. 598-604 (2013).

      [81]    A. Kromp, H. Geisler, A. Weber and E. Ivers-Tiffée, "Electrochemical impedance modeling of gas transport and reformingkinetics in reformate fueled solid oxide fuel cell anodes", Electrochim Acta 106, pp. 418-424 (2013).

      [82]    A. Kromp, A. Weber and E. Ivers-Tiffée, "Electrochemistry of Reformate Fueled Ni/8YSZ Anodes for Solid Oxide Fuel Cells", ECS Trans. 57, pp. 3063-3075 (2013).

      [83]    B. J. McKenna, N. Christiansen, R. Schauperl, P. Prenninger, J. Nielsen, P. Blennow, T. Klemenso, S. Ramousse, A. Kromp and A. Weber, "Advances in Metal Supported Cells in the METSOFC EU Consortium", Fuel Cells 13, pp. 592-597 (2013).

      [84]    J.-C. Njodzefon, D. Klotz, A. Kromp, A. Weber and E. Ivers-Tiffée, "Electrochemical Modeling of the Current-Voltage Characteristics of an SOFC in Fuel Cell and Electrolyzer Operation Modes", J. Electrochem. Soc. 160, p. F313-F323 (2013).

      [85]    J. P. Schmidt, P. Berg, M. Schönleber, A. Weber and E. Ivers-Tiffée, "The distribution of relaxation times as basis for generalized time-domain models for Li-ion batteries", J. Power Sources 221, pp. 70-77 (2013).

      [86]    A. Weber, S. Dierickx, A. Kromp and E. Ivers-Tiffée, "Sulfur Poisoning of Anode-Supported SOFCs under Reformate Operation", Fuel Cells 13, pp. 487-493 (2013).

      [87]    K. Nagato, N. Shikazono, A. Weber, D. Klotz, M. Nakao and E. Ivers-Tiffee, "SOFC Anode Fabricated by Magnetically Aligning of Ni Particles", ECS Trans. 57, pp. 1307-1311 (2013).

      [88]    A. Häffelin, J. Joos, M. Ender, A. Weber and E. Ivers-Tiffée, "Time-Dependent 3D Impedance Model of Mixed-Conducting Solid Oxide Fuel Cell Cathodes", J. Electrochem. Soc. 160, p. F867-F876 (2013).

      [89]    A. Häffelin, J. Joos, A. Weber and E. Ivers-Tiffée, "Three-Dimensional Performance Simulation of SOFC Anodes Using FIB-Tomography Reconstructions", ECS Trans. 57, pp. 2563-2572 (2013).

      [90]    M. Ender, J. Joos, A. Weber and E. Ivers-Tiffée, "Anode microstructures from high-energy and high-power lithium-ion cylindrical cells obtained by X-ray nano-tomography", J. Power Sources 269, pp. 912-919 (2014).

      [91]    H. Geisler, A. Kromp, A. Weber and E. Ivers-Tiffée, "Performance of MIEC cathodes in SOFC stacks evaluated by means of FEM modeling", ECS Trans. 61, pp. 191-201 (2014).

      [92]    H. Geisler, A. Kromp, A. Weber and E. Ivers-Tiffée, "Stationary FEM Model for Performance Evaluation of Planar Solid Oxide Fuel Cells Connected by Metal Interconnectors", J. Electrochem. Soc. 161, p. F778-F788 (2014).

      [93]    J. Joos, M. Ender, I. Rotscholl, N. Menzler, A. Weber and E. Ivers-Tiffée, "Quantification of double-layer Ni/YSZ fuel cell anodes from focused ion beam tomography data", J. Power Sources 246, pp. 819-830 (2014).

      [94]    D. Klotz, A. Leonide, A. Weber and E. Ivers-Tiffée, "Electrochemical model for SOFC and SOEC mode predicting performance and efficiency", International Journal of Hydrogen Energy 39, pp. 20844-20849 (2014).

      [95]    D. Klotz, J. P. Schmidt, A. Weber and E. Ivers-Tiffée, "Performance model for large area solid oxide fuel cells", J. Power Sources 259, pp. 65-75 (2014).

      [96]    A. Kromp, H. Geisler, A. Weber and E. Ivers-Tiffée, "Reactions and Transport Pathways in Syngas Fueled Ni/YSZ SOFC Anodes: Experiments and Modeling", ECS Trans. 61, pp. 75-83 (2014).

      [97]    J. P. Schmidt, A. Weber and E. Ivers-Tiffée, "A novel and precise measuring method for the entropy of lithium-ioncells: DS via electrothermal impedance spectroscopy", Electrochim Acta 137, pp. 311-319 (2014).

      [98]    G. Reiss, H. L. Frandsen, W. Brandstätter and A. Weber, "Numerical evaluation of micro-structural parameters of porous supports in metal-supported solid oxide fuel cells", J. Power Sources 273, pp. 1006-1015 (2014).

      [99]    C. Endler-Schuck, J. Joos, C. Niedrig, A. Weber and E. Ivers-Tiffée, "The chemical oxygen surface exchange and bulk diffusion coefficient determined by impedance spectroscopy of porous La0.58Sr0.4Co0.2Fe0.8O3-d (LSCF) cathodes", Solid State Ionics 269, pp. 67-79 (2015).

    [100]    H. Geisler, S. Dierickx, A. Weber and E. Ivers-Tiffee, "A 2D Stationary FEM Model for Hydrocarbon Fuelled SOFC Stack Layers", ECS Trans. 68, pp. 2151-2158 (2015).

    [101]    H. Geisler, A. Kromp, J. Joos, A. Weber and E. Ivers-Tiffee, "Stationary 2D FEM Model Framework for SOFC Stack Performance Prediction", ECS Trans. 68, pp. 3043-3050 (2015).

    [102]    M. Gupta, A. Weber, N. Markocsan and M. Gindrat, "Electrochemical Performance of Plasma Sprayed Metal Supported Planar Solid Oxide Fuel Cells", ECS Trans. 68, pp. 1791-1802 (2015).

    [103]    J. Illig, M. Ender, A. Weber and E. Ivers-Tiffée, "Modeling graphite anodes with serial and transmission line models", J. Power Sources 282, pp. 335-347 (2015).

    [104]    J. C. Njodzefon, C. Graves, M. B. Mogensen, A. Weber and J. Hjelm, "Kinetic Studies on State of the Art Solid Oxide Cells - A Comparison between Hydrogen/Steam and Reformate Fuels", ECS Trans. 64, pp. 51-65 (2015).

    [105]    J. P. Schmidt, A. Weber and E. Ivers-Tiffée, "A novel and fast method of characterizing the self-discharge behavior of lithium-ion cells using a pulse-measurement technique", J. Power Sources 274, pp. 1231-1238 (2015).

    [106]    A. Weber, J. Szasz, S. Dierickx, C. Endler-Schuck and E. Ivers-Tiffee, "Accelerated Lifetime Tests for SOFCs", ECS Trans. 68, pp. 1953-1960 (2015).

    [107]    C. Uhlmann, P. Braun, J. Illig, A. Weber and E. Ivers-Tiffée, "Interface and grain boundary resistance of a lithium lanthanum titanate (Li3xLa2/3-xTiO3, LLTO) solid electrolyte", J. Power Sources 307, pp. 578-586 (2016).

    [108]    J. C. Njodzefon, C. R. Graves, M. B. Mogensen, A. Weber and J. Hjelm, "Kinetic Studies on State of the Art Solid Oxide Cells: A Comparison between Hydrogen/Steam and Reformate Fuels", J. Electrochem. Soc. 163, p. F1451-F1462 (2016).

    [109]    D. Marcano, G. Mauer, R. Vaßen and A. Weber, "Manufacturing of high performance solid oxide fuel cells (SOFCs) with atmospheric plasma spraying (APS) and plasma spray-physical vapor deposition (PS-PVD)", Surface and Coatings Technology 318, pp. 170-177 (2016).

    [110]    M. Gupta, A. Weber, N. Markocsan and N. Heiden, "Development of plasma sprayed Ni/YSZ anodes for metal supported solid oxide fuel cells", Surface and Coatings Technology 318, pp. 178-189 (2016).

    [111]    M. Gupta, A. Weber, N. Markocsan and M. Gindrat, "Electrochemical Performance of Plasma Sprayed Metal Supported Planar Solid Oxide Fuel Cells", J. Electrochem. Soc. 163, p. F1059-F1065 (2016).

    [112]    A. Weber, S. Dierickx, N. Russner and E. Ivers-Tiffée, "Sulfur Poisoning of Ni-Based SOFC-Anodes - Short and Long Term Behavior", ECS Trans. 77, pp. 141-147 (2017).

    [113]    B. R. Sudireddy, J. Nielsen, A. H. Persson, K. Thyden, K. Brodersen, S. Ramousse, D. Neagu, E. Stefan, J. T. S. Irvine, H. Geisler, A. Weber, G. Reiss, R. Schauperl, J. Rechberger, J. Froitzheim, R. Sachitanand, H. Falk-Windisch, J. E. Svensson, M. W. Lundberg, R. Berger, J. Westlinder, S. Hornauer and T. Kiefer, "Development of Robust Metal-Supported SOFCs and Stack Components in EU METSAPP Consortium", Fuel Cells 17, pp. 508-516 (2017).

    [114]    M. Schoenleber, C. Uhlmann, P. Braun, A. Weber and E. Ivers-Tiffée, "A Consistent Derivation of the Impedance of a Lithium-Ion Battery Electrode and its Dependency on the State-of-Charge", Electrochim Acta 243, pp. 250-259 (2017).

    [115]    D. Klotz, A. Weber and E. Ivers-Tiffée, "Practical Guidelines for Reliable Electrochemical Characterization of Solid Oxide Fuel Cells", Electrochim Acta 227, pp. 110-126 (2017).

    [116]    E. Ivers-Tiffée and A. Weber, "Evaluation of electrochemical impedance spectra by the distribution of relaxation times", Journal of the Ceramic Society of Japan 125, pp. 193-201 (2017).

    [117]    P. Braun, C. Uhlmann, A. Weber, H. Störmer, D. Gerthsen and E. Ivers-Tiffée, "Separation of the bulk and grain boundary contributions to the total conductivity of solid lithium-ion conducting electrolytes", J Electroceram 38, pp. 157-167 (2017).

    [118]    L. Almar, J. Szasz, A. Weber and E. Ivers-Tiffée, "Oxygen Transport Kinetics of Mixed Ionic-Electronic Conductors by Coupling Focused Ion Beam Tomography and Electrochemical Impedance Spectroscopy", J. Electrochem. Soc. 164, p. F289-F297 (2017).

    [119]    S. Dierickx, T. Mundloch, A. Weber and E. Ivers-Tiffée, "How Sulfur Tolerance of Two-Layered Ni/YSZ Anodes Is Governed By Variations in Microstructure and Thickness", ECS Trans. 78, pp. 1273-1284 (2017).

    [120]    N. Russner, H. Geisler, S. Dierickx, A. Weber and E. Ivers-Tiffée, "A Non-Isothermal 2D Stationary FEM Model for Hydrocarbon Fueled SOFCs Stack Layers", ECS Trans. 78, pp. 2673-2682 (2017).

    [121]    M. Hauth, V. Lawlor, P. Cartellieri, C. Zechmeister, S. Wolff, C. Bucher, J. Malzbender, J. Wei, A. Weber, G. Tsotridis, H. L. Frandsen, K. Kwok, T. T. Molla, Z. Wuillemin, J. van Herle, F. Greco, T. Cornu, A. Nakajo, A. Atkinson, L. Vandeperre and X. Wang, "Production and Reliability Oriented SOFC Cell and Stack Design", ECS Trans. 78, pp. 2231-2249 (2017).

    [122]    S. Dierickx, J. Joos, A. Weber and E. Ivers-Tiffée, "Advanced impedance modelling of Ni/8YSZ cermet anodes", Electrochim Acta tbd, p. tbd (2017).