Material Science
Ferroelectric Material
90%
Dielectric Property
54%
Piezoelectricity
54%
Capacitor
52%
Permittivity
51%
Dielectric Material
45%
Composite Material
38%
Oxygen Vacancy
34%
Density
31%
Capacitor Ceramics
28%
Transmission Electron Microscopy
26%
Oxide Compound
25%
ZnO
22%
Sintering Temperature
21%
Piezoelectric Property
21%
Dielectric Spectroscopy
21%
Film
20%
Grain Boundary
20%
Barium Titanate
19%
Single Crystal
18%
Solid Solution
18%
Grain Size
18%
Curie Temperature
17%
Capacitance
17%
Electrical Resistivity
16%
Activation Energy
14%
Electrophoretic Deposition
14%
Sintering
13%
Thin Films
13%
Actuator
13%
Niobate
13%
Barium
13%
Cathode
12%
Piezoelectric Ceramics
12%
Doping (Additives)
12%
Bismuth
10%
Thermoelectrics
9%
Electroceramics
9%
Powder
9%
Anode
9%
Energy Density
9%
Electrical Conductivity
8%
Lead Zirconate Titanate
8%
Keyphrases
Barium Titanate
58%
Cold Sintering
46%
Cold Sintering Process
44%
Dielectric Properties
35%
PbTiO3
30%
Multilayer Ceramic Capacitor
29%
High Temperature
29%
Dielectric
28%
Single Crystal
28%
Perovskite
25%
Solid Solution
23%
Grain Boundary
21%
Capacitors
21%
Densification
20%
Oxygen Vacancy
19%
Low Temperature
17%
Morphotropic Phase Boundary
16%
Transmission Electron Microscopy
16%
Room Temperature
15%
Electric Field (E-field)
14%
Piezoelectric Properties
14%
Microstructure
13%
Co-firing
13%
Microwave Dielectric Properties
12%
Electrical Properties
12%
Electrophoretic Deposition
12%
BiScO3
12%
Resistance Degradation
12%
Grain Size
12%
Permittivity
11%
Sintering Temperature
11%
High Field
11%
Fe-doped SrTiO3
10%
Defect Chemistry
10%
Activation Energy
10%
Impedance Spectroscopy
10%
Dielectric Constant
10%
Sintering Process
9%
Piezoelectric Ceramics
9%
Relaxor Ferroelectrics
8%
Curie Temperature
8%
Ferroelectric Phase Transition
8%
Antiferroelectric
8%
High Curie Temperature
8%
Electroceramics
8%
B-site
8%
Phase Transition
8%
Dielectric Materials
7%
High Performance
7%
Tetragonal Phase
7%
Engineering
Dielectrics
51%
Piezoelectric
26%
Sintering Process
18%
Oxygen Vacancy
14%
Low-Temperature
13%
Room Temperature
9%
Resistance Degradation
9%
Titanate
8%
Activation Energy
7%
Solid Solution
7%
Solid Solution
7%
Base Metal
7%
Transients
6%
Electric Field
6%
Morphotropic Phase Boundary
6%
Domain Wall
6%
Defects
6%
Piezoelectric Coefficient
6%
Temperature Range
6%
Domain Structure
5%
Thin Films
5%
Grain Boundary
5%
Densification
5%
Lead Zirconate
5%
Microstructure
5%
Transmissions
5%