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Hybrid Particles from Polysaccharides and Synthetic Polymers

  • Kartonierter Einband
  • 72 Seiten
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This work reports the formation of complexes between polyelectrolytes and oppositely charged surfactants solutions, and a new proc... Weiterlesen
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Beschreibung

This work reports the formation of complexes between polyelectrolytes and oppositely charged surfactants solutions, and a new procedure to synthesize stable polymeric particles, where the polymerization takes place in the complex. The mixtures behavior between carboxymethylcellulose (CMC) and cetyltrimethylammonium bromide (CTAB), and between chitosan (CH) and sodium dodecyl sulfate (SDS) was investigated in the diluted range at the liquid-air interface by means of surface tension, and in the bulk solution by turbidity and conductivity measurements. The synthesis of polystyrene or poly(methyl methacrylate) was carried out by emulsion polymerization in the critical aggregation concentration (cac) of the CMC/CTAB system. The hybrid particles were characterized by zeta potential, light scattering measurements and scanning electron microscopy. The colloidal stability was attributed to the presence of a hydrated CMC layer around the particles. The present procedure brings the advantage of synthesizing and stabilizing particles with functional groups on the surface in a one-step method using very small amounts of surfactant, a friendly condition for the environment.

Autorentext

Postdoc Associate, Enzymatic Polyesters Synthesis at Institute of Chemistry, University of São Paulo, Ph.D. in Chemistry, Surfaces Chemistry at University of São Paulo, Master in Chemistry, Emulsion Polymerization at University of São Paulo, BS in Chemistry, Federal University of Goiás, Brazil

Produktinformationen

Titel: Hybrid Particles from Polysaccharides and Synthetic Polymers
Untertitel: Synthesis and Characterization
Autor:
EAN: 9783639253504
ISBN: 978-3-639-25350-4
Format: Kartonierter Einband
Herausgeber: VDM Verlag Dr. Müller
Genre: Chemie
Anzahl Seiten: 72
Gewicht: 125g
Größe: H220mm x B150mm x T4mm
Jahr: 2012