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Electronic structure of hybrid perovskites - a new generation of solar cells
Zhidkov, Ivan S.
(Superviser)
Department of Electrophysics
Institute of Physics and Technology
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Физика и астрономия
perovskites
100%
solar cells
61%
halides
43%
butyric acid
39%
phenyls
32%
passivity
27%
cations
27%
temperature effects
27%
rays
25%
photoelectron spectroscopy
24%
degradation
24%
molecular dynamics
21%
metal halides
20%
x rays
18%
coatings
16%
ITO (semiconductors)
13%
thermal instability
12%
absorbers
12%
radiation
10%
seeds
9%
flexibility
9%
glass
8%
electrons
8%
photoelectronics
7%
photoelectrons
6%
temperature
6%
electrodes
6%
bromine
6%
causes
6%
radiation dosage
5%
electronic structure
5%
ethers
5%
chemical equilibrium
5%
red shift
5%
iodine
5%
Технические дисциплины и материаловедение
Perovskite solar cells
97%
Butyric acid
51%
Perovskite
41%
Positive ions
37%
Electron Transport
36%
Passivation
36%
Transport Layer
28%
Solar cells
24%
Radiation
23%
Degradation
20%
Coatings
18%
ITO glass
10%
Metal halides
10%
Red Shift
9%
Photoluminescence
9%
Bromine
9%
Electrodes
9%
Oxides
8%
Iodine
8%
Phase separation
7%
Tin oxides
6%
Space applications
6%
Zinc oxide
6%
Ethers
5%
Conversion efficiency
5%
Химические соединения
Halide
55%
X-Ray Photoelectron Spectroscopy
31%
Chemical Passivation
30%
Electron Transport
22%
Molecular Dynamics
22%
Photochemical Depolymerization
21%
Solar Cell
19%
Thermal Stability
19%
Coating Agent
14%
Metallocene
13%
Flexibility
12%
Acid
10%
Pyrolysis
10%
Simulation
9%
Substitution Reaction
9%
Chloride
8%
Purity
7%
Behavior as Electrode
6%
Liquid Film
5%
Tin Oxide
5%
Phase Separation
5%