Chemical Compounds
Rate Constant
100%
Decomposition
45%
Potential Energy Surface
31%
Radical Reaction
30%
Pressure
30%
Transition State Theory
26%
Transition State
26%
CCSD
25%
Surface
23%
Energy
23%
Dissociation
22%
Pyrolysis
22%
Laser Induced Fluorescence Spectroscopy
21%
Molecular Orbital
17%
Photolysis
16%
Molecule
16%
Reaction Activation Energy
15%
Isomerization
15%
Shock Wave
15%
Photodissociation
13%
Adsorption
13%
Desorption
13%
Gas
12%
Vibrational Energy
12%
Enthalpy of Formation
12%
Tunneling
11%
Density Functional Theory
11%
Ab Initio Calculation
11%
Kinetics Type
11%
Mixture
10%
Resonance
10%
Compound Isomer
10%
Bimolecular Reaction
9%
Master Equation
9%
Hydrogen
9%
Association Reaction
8%
Energy Barrier
8%
[2]rotaxane
8%
Stimulated Emission
8%
Polycrystalline Solid
8%
Dissociative Adsorption
7%
Titanium Dioxide
7%
Rotational Energy
7%
Collision
7%
Dioxygen
7%
100-2
7%
Reduction
6%
Reaction Yield
6%
Adsorption Energy
6%
Cluster Model
6%
Physics & Astronomy
kinetics
60%
decomposition
44%
products
43%
methylidyne
35%
reaction kinetics
29%
thermal decomposition
25%
temperature
24%
molecules
21%
potential energy
21%
adsorption
20%
atoms
19%
dissociation
19%
molecular orbitals
18%
phenyls
17%
energy
15%
lasers
14%
isomerization
14%
photolysis
13%
desorption
13%
vapor phases
13%
laser induced fluorescence
13%
isomers
11%
activation energy
11%
elimination
10%
predictions
10%
photodissociation
10%
chemical lasers
10%
rice
9%
heat of formation
9%
hydrogen
8%
low pressure
8%
energy distribution
8%
hydrazoic acid
8%
oxidation
7%
association reactions
7%
shock tubes
7%
spectroscopy
7%
shock waves
7%
flash
7%
hydroxyl radicals
7%
anatase
7%
density functional theory
7%
nitrites
7%
dimers
6%
vapor deposition
6%
pyrolysis
6%
temperature dependence
6%
hydrazines
6%
rings
6%
rutile
5%
Engineering & Materials Science
Rate constants
39%
Atoms
24%
Adsorption
22%
Molecules
20%
Decomposition
20%
Temperature
19%
Lasers
16%
Potential energy surfaces
15%
Density functional theory
14%
Pyrolysis
13%
Desorption
12%
Hydrogen
11%
Activation energy
10%
X ray photoelectron spectroscopy
10%
Acids
9%
Photodissociation
8%
Molecular orbitals
8%
Titanium dioxide
8%
Dimers
7%
Adsorbates
7%
Ions
7%
Oxygen
7%
Shock waves
7%
Electrons
7%
Solid oxide fuel cells (SOFC)
7%
Stimulated emission
7%
Fluorescence
7%
Photocatalysts
7%
Photolysis
6%
Hydrocarbons
6%
Shock tubes
6%
Isomerization
6%
Reaction kinetics
6%
Chemical lasers
5%
Nanostructures
5%
Photoluminescence
5%
Agglomeration
5%
Pyrene
5%
Single crystal surfaces
5%
Plasma enhanced chemical vapor deposition
5%
Gases
5%
Perovskite
5%