Ingenjörs- och materialvetenskap
Nanowires
100%
Perovskite
66%
X rays
52%
Imaging techniques
45%
Single crystals
40%
X ray diffraction
37%
Metal halides
31%
Scanning
28%
Photoluminescence
26%
Diffraction
25%
Lithium Fluoride
25%
Bias voltage
23%
Diffraction patterns
22%
Gallium nitride
22%
X ray optics
21%
Wavefronts
21%
Microscopes
20%
Atomic force microscopy
20%
Grain growth
20%
Crystals
18%
Crystallization
17%
Lenses
16%
Polycrystalline materials
16%
Crystal structure
16%
Temperature
15%
Transistors
13%
Photons
12%
Detectors
12%
Fabrication
11%
Synchrotrons
11%
X ray lasers
9%
Electric potential
9%
Perovskite solar cells
8%
Film growth
8%
X ray scattering
8%
Femtosecond lasers
8%
Phase transitions
8%
Free electron lasers
8%
Laser radiation
8%
Domain walls
8%
Conductive films
7%
Laser ablation
7%
Beryllium
7%
Optoelectronic devices
7%
Ferroelectric materials
7%
Aberrations
7%
Nanoelectronics
6%
Oxide films
6%
Metals
6%
Crystal lattices
6%
Kemiska föreningar
Nanowire
69%
Ferroelastic Domain
67%
Strain
32%
Coherent X-Ray
26%
Single Crystalline Solid
25%
Voltage
23%
Halide
15%
Nitride
15%
Force
14%
Polycrystalline Solid
14%
Metal
13%
Atomic Force Microscopy
12%
Nanoplatelet
12%
Crystallization
11%
X-Ray
10%
X-Ray Diffraction
10%
Crystal Structure
9%
Polycrystalline Film
7%
Liquid Film
7%
Phase Transition Temperature
5%
Oxide
5%
Optoelectronics
5%
Dielectric Material
5%
Grain Boundary
5%
Ferroelectric Domain
5%
Crystal Phase Property
5%
Piezoelectricity
5%
Reflection
5%
Engineering Device
5%
Fysik och astronomi
nanowires
51%
perovskites
48%
x rays
24%
lithium fluorides
21%
single crystals
21%
metal halides
19%
gallium nitrides
18%
x ray diffraction
18%
diffraction
17%
electric potential
17%
micrometers
16%
dynamic range
15%
diffraction patterns
13%
atomic force microscopy
12%
scanning
12%
spatial resolution
10%
nanoparticles
10%
fabrication
9%
geometrical optics
8%
detectors
8%
lenses
8%
numerical aperture
8%
microscopes
7%
temperature
7%
photoluminescence
6%
crystals
5%
temporal resolution
5%
ferroelastic materials
5%
crystal structure
5%