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Ceramics International, ISSN 0272-8842, 08/2018, Volume 44, Issue 12, pp. 13639 - 13648
This study examined the effects of samarium and erbium co-doping on the structural, optical, and electrical properties of ceria (CeO2). Ceramic (Ce0.8Sm0.2-xErxO2-δ; x = 0, 0.05, 0.10, 0.15, 0.20... 
B: X-ray diffraction | C: Optical Properties | D: CeO2 | Co-doping | C: Ionic conductivity | D: CeO | ELECTROCHEMICAL PROPERTIES | SAMARIA | Optical Properties | Ionic conductivity | X-ray diffraction | IONIC-CONDUCTIVITY | DOPANTS | MATERIALS SCIENCE, CERAMICS | SINTERING TEMPERATURE | IMPEDANCE | CeO2 | SOLID ELECTROLYTES | LANTHANUM | OXIDE FUEL-CELLS | MICROSTRUCTURE
Journal Article
Composites. Part B, Engineering, ISSN 1359-8368, 2015, Volume 69, pp. 335 - 341
.... GnP coated CFs/epoxy composites were manufactured by a prepreg and lay-up method, and the mechanical properties and electrical conductivity of the composites were assessed... 
A. Nano-structures | E. Autoclave | B. Mechanical properties | A. Carbon fiber | Electrical conductivity | Composite materials industry | Graphene | Analysis | Graphite | Mechanical properties | Electric properties | Polymer matrix composites | Carbon fibers | Resistivity | Flexural strength | Nanostructure | Coating | Modulus of rupture in bending
Journal Article
Solid state communications, ISSN 0038-1098, 2013, Volume 155, pp. 49 - 52
We investigate electrical gating of photoluminescence and optical absorption in monolayer molybdenum disulfide (MoS2... 
B. Nanofabrication | A. Molybdenum disulfide | D. Electronic transport | PHYSICS, CONDENSED MATTER | Nanofabrication | Molybdenum disulfide | PHOTOLUMINESCENCE | Electronic transport | QUANTUM-WELL STRUCTURES | SILICON | GRAPHENE | MODULATOR
Journal Article
Composites Part B, ISSN 1359-8368, 02/2016, Volume 87, pp. 256 - 262
Nano-composite particles of γ-FeNi alloy/carbon nanotube (γ-FeNi/CNT) were successfully synthesized by wet chemical method. Microstructure of the as obtained... 
A. Polymer-matrix composites (PMCs) | B. Electrical properties | A. Nano-structures | B. Microstructures | ENGINEERING, MULTIDISCIPLINARY | MATERIALS SCIENCE, COMPOSITES | NI ALLOY NANOPARTICLES | THERMAL-CONDUCTIVITY | Nanoparticles | Absorption | Microwave absorption | Semiconductors | Particulate composites | Carbon nanotubes | Nanostructure | Microstructure
Journal Article
Composites. Part A, Applied science and manufacturing, ISSN 1359-835X, 2013, Volume 46, Issue 1, pp. 166 - 172
We report a comparative study of graphene nanoplatelets (GNPs)–epoxy nanocomposites with enhanced electrical conductive properties obtained with two different processing techniques. In the first one (TEC1... 
B. Electrical properties | D. Thermal analysis | A. Nanostructures | E. Thermosetting resin | EXFOLIATION | Electrical properties | DISPERSION | RAMAN-SPECTROSCOPY | MATERIALS SCIENCE, COMPOSITES | GRAPHITE OXIDE | COMPOSITES | Nanostructures | NANOPLATELETS | Thermosetting resin | REDUCTION | Thermal analysis | ENGINEERING, MANUFACTURING | Graphene | Epoxy resins | Methods | Electric properties
Journal Article
Ceramics International, ISSN 0272-8842, 09/2016, Volume 42, Issue 12, pp. 14011 - 14020
Nanoparticles of ceria–ruthenium oxide solid solutions with composition Ce1−xRuxO2−δ (x=0.005–0.02) were successfully produced by self–propagating room... 
B. X–ray methods | D. CeO2 | A. Powders: solid state reaction | C. Electrical conductivity | D. CeO | Electrical conductivity | SURFACE-AREA | X-ray methods | EARTH-DOPED CERIA | IONIC-CONDUCTIVITY | ELECTROLYTES | MATERIALS SCIENCE, CERAMICS | TEMPERATURE | GAS | CeO2 | Powders: solid state reaction | MULTIDOPED CERIA | OXIDE FUEL-CELLS | CERAMICS
Journal Article
Composites science and technology, ISSN 0266-3538, 2011, Volume 71, Issue 6, pp. 854 - 862
Journal Article
Ceramics international, ISSN 0272-8842, 2018, Volume 44, Issue 10, pp. 11320 - 11330
...) were obtained using the solid-state reaction method. The structure, electric conductivity, and dielectric, ferroelectric, and piezoelectric properties of the Ca2+-doped (Na.47Bi.47Ba.06... 
B. X-ray methods | C. Ferroelectric properties | C. Dielectric properties | A. Sintering | X-ray methods | Sintering | Dielectric properties | BEHAVIOR | PHASE-TRANSITION | RELAXATION | Ferroelectric properties | CONDUCTION MECHANISMS | STRAIN | MATERIALS SCIENCE, CERAMICS | MICROSTRUCTURE
Journal Article