Citation: A. Tarniowy et al., THE EFFECT OF THERMAL-TREATMENT ON THE STRUCTURE, OPTICAL AND ELECTRICAL-PROPERTIES OF AMORPHOUS TITANIUM NITRIDE THIN-FILMS, Thin solid films, 311(1-2), 1997, pp. 93-100
Citation: K. Zakrzewska et al., EFFECT OF NB, CR, SN ADDITIONS ON GAS-SENSING PROPERTIES OF TIO2 THIN-FILMS, Thin solid films, 310(1-2), 1997, pp. 161-166
Citation: M. Rekas et Z. Szklarski, DEFECT CHEMISTRY OF ANTIMONY DOPED SNO2 THIN-FILMS .1. MECHANISM OF SB INCORPORATION INTO SNO2 LATTICE, Bulletin of the Polish Academy of Sciences. Chemistry, 44(3), 1996, pp. 155-162
Citation: M. Rekas et Z. Szklarski, DEFECT CHEMISTRY OF ANTIMONY DOPED SNO2 THIN-FILMS .2. ELECTRICAL-PROPERTIES, Bulletin of the Polish Academy of Sciences. Chemistry, 44(3), 1996, pp. 163-177
Authors:
BORCHARDT G
KOWALSKI K
NOWOTNY J
REKAS M
WEPPNER W
Citation: G. Borchardt et al., ELECTRICAL-PROPERTIES OF UNDOPED COO - A DEBYE-HUCKEL APPROACH, Journal of Materials Science, 31(19), 1996, pp. 5185-5190
Citation: M. Radecka et M. Rekas, THE STUDIES OF HIGH-TEMPERATURE INTERACTION OF NB-TIO2 THIN-FILMS WITH OXYGEN, Journal of physics and chemistry of solids, 56(8), 1995, pp. 1031-1037
Authors:
BORCHARDT G
KOWALSKI K
NOWOTNY J
REKAS M
WEPPNER W
Citation: G. Borchardt et al., THERMOPOWER AND ELECTRICAL-CONDUCTIVITY OF SINGLE-CRYSTAL AND POLYCRYSTALLINE COO, Journal of the European Ceramic Society, 14(4), 1994, pp. 369-376
Authors:
BORCHARDT G
KOWALSKI K
NOWOTNY J
REKAS M
WEPPNER W
Citation: G. Borchardt et al., THERMOPOWER AND ELECTRICAL-CONDUCTIVITY OF SINGLE-CRYSTAL AND POLYCRYSTALLINE COO, Journal of the European Ceramic Society, 14(4), 1994, pp. 369-376
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .2. CONSISTENCY REQUIREMENTS BETWEEN DEFECT MODELS AND CRYSTAL PROPERTIES, Ceramics international, 20(4), 1994, pp. 217-224
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .3. ELECTRICAL-CONDUCTIVITY, THERMOPOWER AND TRANSPORT IN SINGLE-CRYSTALLINE BATIO3, Ceramics international, 20(4), 1994, pp. 225-235
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .4. THERMOPOWER OF POLYCRYSTALLINE BATIO3 WITHIN THE N-P TRANSITION RANGE, Ceramics international, 20(4), 1994, pp. 237-250
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .5. WORK FUNCTION, Ceramics international, 20(4), 1994, pp. 251-255
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .6. GENERAL DEFECT MODEL, Ceramics international, 20(4), 1994, pp. 257-263
Citation: J. Nowotny et M. Rekas, DEFECT STRUCTURE, ELECTRICAL-PROPERTIES AND TRANSPORT IN BARIUM-TITANATE .7. CHEMICAL DIFFUSION IN NB-DOPED BATIO3, Ceramics international, 20(4), 1994, pp. 265-275
Citation: J. Nowotny et M. Rekas, POSITIVE TEMPERATURE-COEFFICIENT OF RESISTIVITY FOR BATIO3-BASED MATERIALS, Ceramics international, 17(4), 1991, pp. 227-241