Keyphrases
Active Layer
14%
Ambient Atmosphere
15%
Blend Film
13%
Bulk Heterojunction
11%
Cell-based
24%
Conductive Polyaniline
12%
Current Hysteresis
14%
Dye-sensitized Solar Cells
14%
Electron Transport Layer
19%
Enhanced Open-circuit Voltage
9%
Fill Factor
9%
Fullerene
7%
Grain Size
9%
High Efficiency
67%
High Fill Factor
7%
High Power Conversion Efficiency
7%
High-quality Perovskite Film
10%
Highly Conducting
12%
Highly Stable
17%
Hole Transport Layer
12%
Inverted Perovskite Solar Cells
25%
Large-area Perovskite Films
7%
Lead Iodide
10%
MAPbI3
16%
Mixed Halide Perovskite Film
7%
One-step Method
7%
PC71BM
9%
PEDOT
26%
Perovskite
22%
Perovskite Absorbers
11%
Perovskite Film
22%
Perovskite Grain
10%
Perovskite Photovoltaics
7%
Perovskite Solar Cells (PeSCs)
53%
Perovskite Solar Modules
14%
Photovoltaic Performance
15%
Planar Perovskite Solar Cells
17%
Poly(3-hexylthiophene) (P3HT)
9%
Polyaniline (PANi)
7%
Polymer Substrate
7%
Power Conversion Efficiency
31%
Precursor Solution
8%
Room Temperature
8%
Rutile
9%
Solar Cell
13%
Solar Module
7%
Stable Perovskite Solar Cells
7%
Surface Engineering
9%
Thermally Stable
9%
TiO2 Nanoparticles
7%
Material Science
Conducting Polymer
7%
Density
10%
Dye-Sensitized Solar Cell
14%
Electrical Conductivity
6%
Electron Transfer
10%
Electronic Circuit
14%
Film
100%
Fullerene
7%
Grain Boundary
7%
Grain Size
10%
Halide
10%
Heterojunction
11%
Indium Tin Oxide
6%
Nanoparticle
13%
Organic Solar Cells
6%
Oxide Compound
5%
Perovskite Solar Cell
77%
Photovoltaic Performance
13%
Photovoltaics
14%
Polyaniline
16%
Solar Cell
26%
Spin Coating
10%
Surface (Surface Science)
14%
Surface Engineering
9%
Thin Films
10%
Tin Oxide
7%
Titanium Dioxide
15%
ZnO
9%
Engineering
Active Layer
10%
Engineering
9%
Heterojunctions
5%
Lowest Unoccupied Molecular Orbital
5%
Nanoparticle
6%
Open Circuit Voltage
14%
Perovskite Solar Cells
48%
Photovoltaic Performance
9%
Photovoltaics
13%
Power Conversion Efficiency
28%
Precursor Solution
5%
Room Temperature
14%
Solar Cell
15%
Term Stability
6%
Thin Films
5%