Jacob M. Haag, Ph.D.
Affiliations: | 2005-2010 | Chemistry | Northwestern University, Evanston, IL |
2010-2013 | Air Force Research Laboratories, Wright-Patterson Air Force Base, OH, United States | ||
2013- | BASF |
Area:
Inorganic Chemistry, Materials ChemistryGoogle:
"Jacob Haag"Parents
Sign in to add mentorKenneth R. Poeppelmeier | grad student | 2005-2010 | Northwestern | |
(Application and characterization of mixed metal oxides as anodes for solid oxide fuel cells.) |
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Publications
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Fowler DE, Haag JM, Boland C, et al. (2014) Stable, low polarization resistance solid oxide fuel cell anodes: La 1-xSrxCr1-xFexO3-δ (x = 0.2-0.67) Chemistry of Materials. 26: 3113-3120 |
Bierschenk DM, Haag JM, Poeppelmeier KR, et al. (2013) Performance and stability of LaSr2Fe2CrO 3-d-based solid oxide fuel cell anodes in hydrogen and carbon monoxide Journal of the Electrochemical Society. 160: F90-F93 |
Haag JM, Bierschenk DM, Barnett SA, et al. (2012) Structural, chemical, and electrochemical characteristics of LaSr 2Fe 2CrO 9-δ-based solid oxide fuel cell anodes Solid State Ionics. 212: 1-5 |
Haag JM, Barnett SA, Richardson JW, et al. (2010) Structural and chemical evolution of the SOFC anode La 0.30Sr0.70Fe0.70Cr0.30O 3-δ upon reduction and oxidation: An in situ neutron diffraction study Chemistry of Materials. 22: 3283-3289 |
Fan X, Pan S, Hou X, et al. (2010) Growth and properties of single crystals of noncentrosymmetric Na 3VO2B6O11 Crystal Growth and Design. 10: 252-256 |
Gong M, Bierschenk D, Haag J, et al. (2010) Degradation of LaSr2Fe2CrO9-δ solid oxide fuel cell anodes in phosphine-containing fuels Journal of Power Sources. 195: 4013-4021 |
Bierschenk DM, Haag JM, Poeppelmeier KR, et al. (2009) Effect of coal syngas fuel composition on the performance and stability of oxide anodes Ecs Transactions. 25: 2107-2116 |
Haag JM, Madsen BD, Barnett SA, et al. (2008) Application of LaSr2Fe2CrO9-δ in solid oxide fuel cell anodes Electrochemical and Solid-State Letters. 11: B51-B53 |
Pan S, Smit JP, Marvel MR, et al. (2008) Synthesis, crystal structure, and nonlinear optical properties of Bi2Cu5B4O14 Journal of Solid State Chemistry. 181: 2087-2091 |