Engineering & Materials Science
Phosphorescence
94%
Polymer solar cells
92%
Fluorescence
60%
Chromophores
59%
Polymers
57%
Halogenation
52%
Photosensitizers
46%
Charge transfer
44%
Fluorination
44%
Electrons
43%
Optoelectronic devices
43%
Chlorination
39%
Solar cells
32%
Molecular orbitals
31%
Boron
29%
Electron energy levels
22%
Temperature
21%
Charge carriers
19%
Carrier mobility
19%
Molecules
19%
Photodynamic therapy
16%
Polymerization
14%
Thiophene
14%
Oxygen
14%
Infrared absorption
13%
Cytotoxicity
13%
Agglomeration
11%
Electronic equipment
11%
Organic semiconductor materials
10%
Dyes
9%
Conversion efficiency
9%
Atoms
9%
Defects
8%
Excited states
8%
Phase separation
8%
Luminance
8%
Dihedral angle
8%
Chlorine
8%
Open circuit voltage
7%
Tissue
7%
Organic compounds
7%
Organic solar cells
7%
Fullerenes
6%
Electron devices
6%
Imaging techniques
6%
Absorption spectra
6%
Bleaching
5%
Derivatives
5%
Copolymers
5%
Tuning
5%
Chemical Compounds
Delayed Fluorescence
100%
Donor
76%
Perylene
58%
Solar Cell
56%
Optoelectronics
43%
Density Functional Theory
38%
Band Gap
36%
Conjugated Polymer
32%
Phenazine
32%
Energy
32%
Intersystem Crossing [Singlet->triplet]
29%
Quinoxaline
29%
Ambient Reaction Temperature
29%
Highest Occupied Molecular Orbital
29%
Chromophore
29%
Fluorination
28%
Dye
27%
Excited State
25%
Electron Acceptor
24%
Charge Transfer
24%
Boron Atom
22%
Block Like Crystal
22%
Charge Transfer State
20%
Polymerization Reaction
15%
Length
15%
Error
13%
Dioxygen
12%
Charge Carrier
12%
Phototoxic
12%
Dihedral Angle
11%
Exciplex
11%
Coupled Cluster
11%
Spin-Orbit Coupling
10%
Compound Mobility
10%
Photoexcitation
9%
Molecule
9%
Pyrrole
8%
Electron Donor
8%
Application
7%
Enthalpy of Mixing
7%
Quantum Yield
7%
Light Blue
7%
Bleaching
7%
Frontier Orbital
7%
Toluene
6%
Thiophene
5%
Lowest Unoccupied Molecular Orbital
5%
Chlorine
5%
Physics & Astronomy
dyes
34%
density functional theory
30%
functionals
24%
charge transfer
22%
fluorescence
19%
pyrroles
18%
dihedral angle
17%
organic materials
14%
photoexcitation
14%
toluene
14%
atoms
13%
excitation
12%
electrons
11%
energy levels
10%
alignment
10%
tuning
9%
absorption spectra
9%
orbits
9%
atomic energy levels
9%
energy
9%
requirements
8%
optimization
8%
oxygen
7%
prototypes
6%