Engineering & Materials Science
Lead zirconate titanate
100%
Ferroelectric materials
66%
Thin films
57%
Domain walls
41%
Doping (additives)
29%
Ferroelectric films
25%
Perovskite
24%
Electric fields
22%
Ferroelectricity
18%
Electrodes
17%
Nitrides
15%
Scandium
15%
Niobium
14%
Remanence
14%
Aluminum nitride
13%
Buffer layers
13%
Crystallization
13%
Microspheres
12%
Sol-gels
12%
Electric breakdown
12%
Oxide films
11%
Microstructure
11%
Composite materials
11%
Lead
11%
Polystyrenes
11%
Seed
10%
Boron
10%
Zeta potential
10%
Leakage currents
9%
Temperature
8%
Chemical analysis
8%
Polarization
8%
Entropy
8%
Degradation
7%
Oxides
7%
Aging of materials
7%
Aluminum
7%
Energy gap
7%
Electrons
6%
Ferroelectric thin films
6%
Current density
6%
Microscopic examination
6%
Substrates
6%
Grain boundaries
6%
Metals
6%
Aluminum oxide
6%
Electron injection
6%
Open circuit voltage
5%
Permittivity
5%
Experiments
5%
Chemical Compounds
Liquid Film
68%
Ferroelectric Switching
34%
Dielectric Material
24%
Polarization
22%
Electric Field
20%
Ferroelectric Film
17%
Piezoelectricity
17%
Piezoelectric Coefficient
13%
Nitride
13%
Aluminium Nitride
12%
Microstructure
12%
Leakage Current
11%
Behavior as Electrode
11%
Piezoresponse Force Microscopy
10%
Strength
10%
Composite Material
9%
Resistance
9%
Ambient Reaction Temperature
8%
Microsphere
8%
Ferroelectric Domain
8%
Voltage
8%
Entropy
7%
Polarity
7%
Oxide
7%
Hysteresis
7%
Dielectric Response
7%
Grain Boundary
7%
Energy
7%
Band Gap
7%
Electron Particle
7%
Permittivity
6%
Zeta Potential
6%
Buffer Solution
6%
Crack Initiation
5%
Surface
5%
Dipole
5%
Magnetron Sputtering
5%
Ceramic
5%
Current Density
5%
Cubic Crystal
5%
Time
5%
Potential Barrier
5%
Physics & Astronomy
thin films
34%
domain wall
28%
ferroelectricity
22%
lead zirconate titanates
14%
preparation
13%
laser interferometry
12%
magnesium oxides
12%
niobates
11%
polarization
11%
aluminum nitrides
10%
boron nitrides
10%
potassium
9%
zinc oxides
9%
electric fields
9%
permittivity
8%
acids
8%
polystyrene
8%
sodium
8%
assembly
8%
buffers
8%
dielectric properties
7%
gels
7%
crystallization
7%
lattice parameters
7%
temperature
6%
life (durability)
6%
rays
6%
coefficients
6%
heating
6%
composite materials
5%
crystals
5%
room temperature
5%
temperature dependence
5%
electrodes
5%
wurtzite
5%
temperature distribution
5%