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Volumn 330, Issue 1, 2009, Pages 170-174
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P(AA-SA) latex particle synthesis via inverse miniemulsion polymerization- nucleation mechanism and its application in pH buffering
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Author keywords
Miniemulsion polymerization; Particle nucleation; pH buffering
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Indexed keywords
ABS RESINS;
ACIDS;
ACRYLICS;
AMMONIUM COMPOUNDS;
CARBOXYLIC ACIDS;
CHEMICAL REACTIONS;
COLLOIDS;
CONCENTRATION (PROCESS);
CRITICAL MICELLE CONCENTRATION;
DISSOLUTION;
DROP FORMATION;
DROPS;
EMULSIFICATION;
MICELLES;
MONOMERS;
NUCLEATION;
ORGANIC ACIDS;
ORGANIC POLYMERS;
POLYMERIZATION;
POLYMERS;
SIMULATED ANNEALING;
SODIUM;
SURFACE ACTIVE AGENTS;
TITRATION;
VOLUMETRIC ANALYSIS;
ACRYLIC ACIDS;
CROSSLINKING DEGREES;
DROPLET NUCLEATIONS;
EMULSION STABILITIES;
INVERSE MINIEMULSION POLYMERIZATIONS;
LATEX PARTICLES;
METABISULFITE;
MICELLAR NUCLEATIONS;
MINIEMULSION POLYMERIZATION;
NUCLEATION MECHANISMS;
OSMOTIC PRESSURES;
PARTICLE NUCLEATION;
REDOX INITIATORS;
SODIUM ACRYLATES;
SODIUM HYDROXIDES;
SURFACTANT CONCENTRATIONS;
TEMPORAL RESPONSES;
LATEXES;
AMMONIUM DERIVATIVE;
BUFFER;
LATEX;
PERSULFATE AMMONIUM;
POLYACRYLIC ACID;
SODIUM HYDROXIDE;
SODIUM METABISULFITE;
STABILIZING AGENT;
UNCLASSIFIED DRUG;
ARTICLE;
CRITICAL MICELLE CONCENTRATION;
INVERSE MINIEMULSION POLYMERIZATION;
ISOELECTRIC POINT;
OSMOTIC PRESSURE;
PARTICLE SIZE;
PH;
POLYMERIZATION;
PRIORITY JOURNAL;
PROTON TRANSPORT;
SYNTHESIS;
THERMOREGULATION;
TITRIMETRY;
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EID: 56649114356
PISSN: 00219797
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jcis.2008.10.036 Document Type: Article |
Times cited : (19)
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References (22)
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