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1、InternalControlled Free Radical Polymerization(CFRP)Dispersant TechnologyTony MoySr.Technical SpecialistBASF Formulation AdditivesSeptember 05,2024InternalAgenda Theory:Why Dispersing Agents Mode of Action Chemistry:Controlled Free Radical Polymerization(CFRP)Application Example:Showing benefits of
2、CFRP dispersant technology09.05.20242Controlled Free Radical Polymerization(CFRP)Dispersant TechnologyInternalDispersing AgentsWhat and Why Dispersants are chemical substances:Several forms:surface actives(surfactants)and polymersUsed to make dispersions of solids/particles(pigments)Stabilize and di
3、sperse(keep apart)pigment particlesHave two functional aspects:Pigment affinityCompatibility with medium09.05.20243Controlled Free Radical Polymerization(CFRP)Dispersant TechnologyInternalViscosityStrengthOpacityPhoto stabilityhigherlowerparticle sizePigment delivery form:agglomeratesOptimum coloris
4、tic properties at lower particle sizeMore pigment surface leads to viscosity increaseFavored energy statePrimary particlesAggregatesAgglomeratesFavored propertiesTheoryNeed for dispersion09.05.20244Controlled Free Radical Polymerization(CFRP)Dispersant TechnologyInternalTheoryThree steps:Wetting Bre
5、akdown Stabilization Reduction of surface tension differencebetween solid and liquid phase to improvepigment wettingPenetrationAir removalBreak down+“Energy Input”StabilizingWetting+“Dispersant”Pigment particle size reduction leads tounfavorable energy state Dispersant adsorbs on pigment surface top
6、revent re-agglomeration09.05.20245Controlled Free Radical Polymerization(CFRP)Dispersant TechnologyInternalCharge StabilizationElectrostatic Repulsion Main relevance for dispersions in water andinorganic pigments Stability can be disrupted by high saltconcentrationsrepulsive forceSteric or Entropic