Material Science
Thermoelectrics
100%
Monolayers
80%
Electronic Property
64%
Doping (Additives)
50%
Density
48%
Tin
36%
Oxygen Vacancy
34%
Ferromagnetism
34%
Magnetic Property
29%
Optical Property
27%
Mechanical Stability
25%
Photovoltaics
24%
Ab Initio Calculation
22%
Lattice Vibration
22%
Cerium Oxide
22%
Magnetism
21%
Thermal Conductivity
20%
Carrier Mobility
17%
Perovskite Solar Cell
16%
Permittivity
16%
Electron Mobility
13%
Germanium
13%
Photovoltaic Performance
13%
Solar Cell
12%
Electrical Conductivity
12%
Tensile Strain
11%
Titanium Oxide
11%
Molybdenum
11%
Thermophysical Property
11%
Magnetic Device
11%
Cobalt Alloys
11%
Halide
11%
Thin Films
11%
Titanium Dioxide
11%
Graphene
11%
Hafnium
11%
Elastic Property
10%
Carrier Concentration
10%
Elastic Constant
10%
Spin Polarization
9%
Single Crystal
7%
Thermoelectric Materials
7%
Capacitor
5%
Semiconductor Material
5%
Ferromagnetic Material
5%
Lattice Mismatch
5%
Keyphrases
Van Der Waals Correction
11%
Orthorhombic CH3NH3PbI3
11%
Zn-doped
11%
N-type Conductivity
11%
Electronic Modification
11%
Allotropes
11%
Cd Doping
11%
Heusler Alloys
11%
Antimonene
11%
Sb Vacancies
11%
Ni-doped MoS2
11%
Optical Modification
11%
MoS2 Monolayer
11%
Induced Transformations
11%
Mechanical Modification
11%
Wormhole
11%
Octahedral Tilting
11%
Transmission Control Protocol
11%
Security Approach
11%
Ruddlesden-Popper
11%
End Support
11%
Ru-doped
11%
Authenticated Routing for Ad Hoc Network
11%
Protocol Performance
11%
Mn Doping
11%
Band Engineering
11%
Bader Charge Analysis
11%
Enhanced Ferromagnetism
11%
Electronic Defects
11%
Defect Chemistry
11%
Gd Substitution
11%
Sn Doping
11%
Gd-doped CeO2
11%
Sb2Se3
11%
Oxygen Vacancy Dynamic
11%
Octahedral Distortion
11%
Band Gap Tailoring
11%
Tin Halide Perovskites
11%
Oxygen Vacancy Diffusion
11%
Monolayer MoS2
11%
S Vacancy
11%
SnSe
11%
Monoclinic WO3
11%
Optoelectronic Functionalities
11%
H-cluster
11%
Inverse Perovskite
11%
SnS Monolayer
11%
Induced Ferromagnetism
11%
Sr Doping
11%
Vibrational Properties
11%
First-principles Investigation
11%
Half-Heusler
11%
Lattice Dynamics
11%
Mn(II) Compound
11%
Lattice Dynamic Properties
11%
Ultrahigh Power Factor
11%
Lattice Mechanical Properties
11%
Molybdenum Doping
11%
GGA + U
11%
Fe-Cr Alloys
11%
SrSnO3
11%
Co-alloying
11%
Gd Doping
8%
C Substitution
7%
Halide Anions
7%
Halide Ions
7%
Spintronic Applications
7%
Sr Content
7%
Half-metallic Gap
7%
Lattice Thermal Conductivity
7%
Half-metallic Ferromagnets
7%
Fe Substitution
5%
Optoelectronic Performance
5%
High Carrier Mobility
5%
H-bond Length
5%