Keyphrases
Magnesium Hydroxide
100%
Van Der Waals Heterostructures
100%
Solar-to-hydrogen Efficiency
100%
Heterostructure
66%
Strain Engineering
33%
Stable Photocatalyst
33%
Optical Properties
16%
Electronic Properties
16%
Precision Control
16%
Highly Stable
16%
Thermal Stability
16%
Charge Transfer
16%
Electronic Structure
16%
Tunability
16%
Kinetic Stability
16%
Mechanical Stability
16%
Renewable Energy Technologies
16%
Dispersion Properties
16%
Solar Energy
16%
Photocatalyst
16%
Absorption Edge
16%
Photocatalytic Applications
16%
Visible Light Spectrum
16%
Photogenerated Electron-hole Pairs
16%
Hydrogen Production
16%
Thermal-mechanical
16%
Photocatalytic Potential
16%
Electron-hole Pairs Separation
16%
Built-in Electric Field
16%
Type-II Band Alignment
16%
Potential Drop
16%
Phonon Dispersion
16%
First-principles Method
16%
Charge Density Difference
16%
Type-I Band Alignment
16%
Ab Initio Molecular Dynamics
16%
Overall Water Splitting
16%
Mechanical Property Analysis
16%
Solar Water Splitting
16%
Compressive Strain
16%
Tensile Strain
16%
Renewable Energy Research
16%
Indirect Band Gap
16%
High Efficiency
16%
Existing System
16%
Transformative Roles
16%
Solar Energy Utilization
16%
Electric Field Analysis
16%
Carrier Separation Efficiency
16%
Photocatalyst Design
16%
Solar-to-hydrogen Conversion Efficiency
16%
Thermal Kinetics
16%
Redox Capacity
16%
Strong Optical Absorption
16%
Engineering
Heterostructures
100%
Theoretical Study
100%
Heterojunctions
100%
Hydrogen Efficiency
100%
Photocatalysts
66%
Solar Energy
33%
Engineering Strain
33%
Hole Pair
16%
Renewable Energy Technologies
16%
Promising Candidate
16%
Broad Range
16%
Potential Drop
16%
Absorption Edge
16%
Phonon Dispersion
16%
Separation Efficiency
16%
Hydrogen Production
16%
Mechanical Stability
16%
Water Splitting
16%
Charge Density
16%
Overall Water Splitting
16%
Renewable Energy
16%
Band Gap
16%
Electric Field
16%
Monolayers
16%
Electronic State
16%
Tensile Strain
16%
Absorptivity
16%
Compressive Strain
16%
Heterojunction
16%
Solar-to-Hydrogen Conversion Efficiency
16%
Chemical Engineering
Hydrogen Production
100%
Carrier Separation Efficiency
100%
Physics
Built-in Electric Field
25%
Material Science
Built-in Electric Field
12%