Keyphrases
Aqueous Media
100%
Explosives
100%
Microbeads
100%
One-step Synthesis
100%
Selective Sensing
100%
Fluorescent Microspheres
100%
Toluene
80%
Styrene
80%
Nitroaromatic Compounds
80%
Pyrenyl
80%
Dinitro
80%
Ethylene Glycol Dimethacrylate (EGDMA)
60%
Aqueous Dispersion
40%
Quenching Phenomenon
40%
Highly Sensitive
20%
Tetrahydrofuran
20%
Cross-linker
20%
Pyrene
20%
Polymerization Reaction
20%
Particle Size Range
20%
Fluorescence Measurement
20%
Suzuki Coupling
20%
Particle Size Distribution
20%
Polymerized
20%
Organic Media
20%
Stable Dispersion
20%
Detector Response
20%
Highly Selective
20%
Monodisperse
20%
Fluorescence Quenching
20%
Highly Crosslinked
20%
Acetonitrile-water Mixtures
20%
High-throughput Detection
20%
Homogeneous Dispersion
20%
Styrene Monomer
20%
Solvent Conditions
20%
Nitroaromatic Detection
20%
2,4,6-Trinitrophenol
20%
Picric Acid
20%
Nanomolar Level
20%
Distillation Precipitation Polymerization
20%
Trinitro
20%
Pyrene-based
20%
Acetonitrile-methanol
20%
Quenching Ability
20%
Fluorescence Chemosensor
20%
Fluorescence Characteristics
20%
Limit of Detection
20%
Toluene-2
20%
Polymeric Microbeads
20%
Strong Fluorescence
20%
Pharmacology, Toxicology and Pharmaceutical Science
Styrene
100%
Microsphere
100%
Aromatic Nitro Compound
80%
Ethylene Glycol Dimethacrylate
60%
Pyrene Derivative
40%
Picric Acid
40%
Methanol
20%
Acetonitrile
20%
Particle-Size Distribution
20%
Monomer
20%
Polymerization Reaction
20%
Tetrahydrofuran
20%
Chemistry
Styrene
100%
Microsphere
100%
Ethylene Glycol Dimethacrylate
60%
Monomer
20%
Tetrahydrofuran
20%
Polymerization
20%
Methanol
20%
Fluorescence Quenching
20%
Molecular Receptor Sensor
20%
Polymerization Reaction
20%
Picric Acid
20%
Acetonitrile
20%
Suzuki Reaction
20%
Particle Size Analysis
20%
Material Science
Polymerization
100%
Microsphere
100%
Particle Size Analysis
50%
Chemical Engineering
Styrene
100%
Ethylene
60%
Polymerization
40%
Methanol
20%
Acetonitrile
20%