Keyphrases
Silicon-based
100%
Bilayer Graphene
100%
Schottky Solar Cell
100%
Indium Tin Oxide
80%
Graphene
40%
Power Conversion Efficiency
40%
Sheet Resistance
40%
Transmittance
40%
Surface Potential
40%
Tunable Work Function
40%
High Efficiency
20%
AM1.5G
20%
Indium
20%
Conductance
20%
External Quantum Efficiency
20%
Flexible Substrate
20%
Characterization Data
20%
N-Si
20%
Device Fabrication
20%
Carrier Mobility
20%
Graphene-based Materials
20%
One Sun
20%
Transparent Electrode
20%
Solar Cell Applications
20%
Silicon Solar Cells
20%
Hybrid Solar Cells
20%
Doping Method
20%
Carrier Collection
20%
Low-cost Photovoltaics
20%
Chemical Doping
20%
Quantum Efficiency Measurement
20%
Photogenerated Carriers
20%
Process Attributes
20%
High Optical Absorption
20%
Easy Processing
20%
Rapid Production
20%
Trifluoromethanesulfonyl
20%
Short-circuit Photocurrent
20%
High-efficiency Production
20%
Transparence
20%
Photovoltaic Industry
20%
Crystalline Silicon Thin Film
20%
Excellent Conductivity
20%
Engineering
Junction Solar Cell
100%
Graphene
100%
Monolayers
100%
Indium-Tin-Oxide
57%
Power Conversion Efficiency
28%
Sheet Resistance
28%
Surface Potential
28%
Solar Cell
28%
Thin Films
14%
Photovoltaics
14%
External Quantum Efficiency
14%
Flexible Substrate
14%
Data Show
14%
Photocurrent
14%
Photovoltaic Industry
14%
Hybrid Solar Cells
14%
Crystalline Silicon
14%
Layer Graphene
14%
Photogenerated Carrier
14%
Carrier Mobility
14%
Absorptivity
14%
Material Science
Monolayers
100%
Graphene
100%
Silicon
100%
Solar Cell
100%
Indium Tin Oxide
50%
Photovoltaics
25%
Surface (Surface Science)
25%
Thin Films
12%
Electronic Circuit
12%
Indium
12%
Carrier Mobility
12%
Device Fabrication
12%
Silicon Solar Cell
12%
Hybrid Solar Cells
12%
Chemical Engineering
Graphene
100%
Indium
62%
Tin Oxide
50%
Sheet Resistance
25%
Film
12%