Materials Science Engineering
(Ceramic Engineering,
Metallurgical Engineering)
223 McNutt Hall
1400 N. Bishop
Rolla, MO 65409- 0330
(573) 341-4711
matlsci@mst.edu
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| Materials Science & Engineering, Missouri University of Science and Technolog,y 223 McNutt Hall, Rolla, MO, 65409; Phone: (573) 341-7130 Fax: (573) 341-6934 |
Multifunctional electronic ceramics and composites
Nanoscale science and engineering
Solidification and crystal growth
High temperature superconducting materials, dielectrics, piezoelectrics,
thermophotovoltaic emitters, mixed ionic electronic conductors, solid oxide
fuel cells
1. F. Dogan, “Solid Oxide Fuel Cells Operating with Direct-Alcohol and Hydrocarbon Fuels,” Alcoholic Fuels, ed. S. Minteer, CRC Press Taylor & Francis Group, Chapter 11, p. 203-214, (2006).
2. O. Jongprateep and F. Dogan, “Enhancement of Crystal Growth and Superconducting Properties of Melt-Textured YBa2Cu3O7-x through Addition of BaCeO3 and BaSnO3,” Supercond. Sci. Technol., 19, 1130-1135 (2006).
3. H. Woo, P. Dai, S. M Hayden, H. A. Mook, T. Dahm, D. J. Scalapino, T. G. Perring, and F. Dogan, “Magnetic Energy Change Available to Superconducting Condensation of Optimally Doped YBa2Cu3O6.95” Nature Physics, 2, 600-604, (2006).
4. B. Deken, S. Pekarek, and F. Dogan, “Minimization of Field Enhancement in Multilayer Capacitors,” Computational Materials Science, 37 (3), 401-409, (2006).
5. V. Petrovsky, A. Manohar, and F. Dogan, “Dielectric Constant of Particles Determined by Impedance Spectroscopy,” J. Appl. Phys., 100 (1): Art. No. 014102 (2006).
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Click here for biographical information.