Технические дисциплины и материаловедение
Crystal structure
100%
Ligands
87%
Positive ions
62%
Metal-Organic Frameworks
60%
Negative ions
59%
Single crystals
40%
X ray diffraction analysis
39%
Polymers
38%
Salts
33%
Luminescence
29%
Acids
29%
Atoms
26%
Chemical analysis
25%
Niobium
24%
Dimethylformamide
24%
X ray diffraction
24%
Metalorganic frameworks
23%
Infrared spectroscopy
19%
Discrete Fourier transforms
19%
Nuclear magnetic resonance
18%
Metals
17%
Nuclear magnetic resonance spectroscopy
16%
Self assembly
16%
Cyclodextrins
16%
Crystals
15%
Molecules
15%
Pyridine
14%
Paramagnetic resonance
14%
Oxidation-Reduction
14%
Oxidation
12%
Zinc
12%
Polyoxometalates
12%
Ions
12%
Sulfides
12%
Chalcogenides
11%
Tantalum
11%
Acetonitrile
11%
X rays
10%
Catalyst activity
10%
Proton conductivity
10%
Thermogravimetric analysis
10%
Mass spectrometry
10%
Electronic structure
9%
Molybdenum
9%
Acetone
9%
Adsorption
9%
Cyclic voltammetry
9%
Electrons
9%
Hybrid materials
8%
Paraffins
8%
Photoluminescence
8%
Spectroscopy
8%
Derivatives
8%
Heating
8%
Crystalline materials
8%
Bismuth
7%
Potassium
7%
Thermodynamic stability
7%
Quantum yield
7%
Sorption
7%
Metal complexes
7%
Crystallization
7%
X ray crystallography
7%
Vanadium
7%
X ray powder diffraction
7%
Phosphorescence
7%
Protons
7%
Thioureas
7%
Scandium
6%
Copper
6%
Rare earth elements
6%
Temperature
6%
Isomers
6%
Thiophene
5%
Palladium
5%
Hydrogen bonds
5%
Transition metals
5%
Oxygen
5%
Ethane
5%
Organometallics
5%
Cyclohexane
5%
Alcohols
5%
Density functional theory
5%
Catalysts
5%
Benzene
5%
Optical properties
5%
Electrochemical properties
5%
Topology
5%
Cadmium
5%
X ray analysis
5%
Химические соединения
Metal Organic Framework
63%
Molecular Cluster
50%
Crystal Structure
49%
Ligand
42%
Anion
38%
Single Crystal X-Ray Diffraction
36%
Cation
35%
Luminiscence Type
32%
X-Ray Diffraction
24%
Elemental Analysis
23%
Density Functional Theory
19%
IR Spectroscopy
19%
Halogen
17%
N,N-Dimethylformamide
16%
Energy
15%
Acid
15%
Clathrate
13%
Porosity
12%
Mixture
12%
Aqueous Solution
12%
Thermogravimetric Analysis
12%
Pivalate
12%
Bromide
12%
Molecule
12%
Photoluminescence
11%
Adsorption
10%
Thermal Stability
10%
Reaction Yield
10%
Powder X-Ray Diffraction
9%
Chemistry
9%
Oxidation Reaction
9%
Ion
9%
Pyridine
9%
Crystallization
8%
Acetone
8%
Octane
7%
X-Ray
7%
Oxalate
7%
NMR Spectroscopy
7%
(S)-Malic Acid
7%
Electronic State
7%
Halide
7%
Coordination Compound
7%
Iodide
7%
Sorption
6%
Magnetic Property
6%
Cyclic Voltammetry
6%
Metal
6%
Micro Porosity
6%
Terephthalic Acid
6%
Sulfide
6%
1H NMR Spectroscopy
6%
Evaporation
6%
N-Heterocyclic Carbene
6%
Acetonitrile
6%
Environment
6%
Alkane
6%
Solvent
6%
Luminiscence Spectrum
6%
Organic Cation
6%
Benzene
6%
Solution Behavior
6%
Phosphorescence
6%
Gas
5%
Phosphine
5%
Polyanion
5%
Supramolecular Polymer
5%
(R)-Malic Acid
5%
Metal Ion
5%
Carbon Dioxide
5%
EPR Spectroscopy
5%
Tungsten
5%
Copper(II) Nitrate
5%
Adduct
5%
Reduction
5%
Dibromine
5%
Metallocene
5%
Red
5%
Acetylacetonate
5%
Block Like Crystal
5%
Tris
5%
Quantum Yield
5%
Conductivity
5%
Mass Spectrometry
5%
N,N-Dimethylacetamide
5%
Физика и астрономия
coordination polymers
73%
ligands
49%
crystal structure
48%
anions
32%
synthesis
32%
cations
31%
salts
26%
x rays
23%
metals
23%
single crystals
19%
halogens
18%
diffraction
17%
acids
16%
solid state
14%
interactions
13%
dicarboxylic acids
13%
carboxylates
12%
luminescence
12%
niobium
12%
adsorption
10%
molecules
9%
fragments
9%
nuclear magnetic resonance
9%
oxidation
9%
spectroscopy
8%
pyridines
8%
bromides
8%
acetonitrile
7%
sulfides
7%
aqueous solutions
7%
products
7%
inclusions
7%
heating
7%
atoms
7%
self assembly
7%
chlorides
6%
zinc
6%
iodides
6%
octanes
6%
cubane
6%
thermal stability
6%
topology
6%
crystallization
6%
thiophenes
6%
crystals
5%
rhenium
5%
benzene
5%
acetone
5%
ions
5%
scandium
5%
thioureas
5%
kinetics
5%
phosphorescence
5%
copper
5%
terephthalate
5%