Advanced Polymer Nanoparticles: Synthesis and Surface by Vikas Mittal

By Vikas Mittal

Polymer latex debris proceed to develop into more and more very important in several advertisement functions. complex synthesis concepts are the most important to constructing new performance for nanoparticles. those equipment give the opportunity to tailor the dimensions, chemical composition, or houses of those debris, in addition to the molecular weight of the polymer chain as a complete, in accordance with given requirements.

Advanced Polymer Nanoparticles: Synthesis and floor differences summarizes vital advancements within the complex synthesis and floor amendment innovations used to generate and mildew polymer debris. This ebook explores the evolution and enhancement of techniques corresponding to emulsion, mini-emulsion, micro-emulsion, dispersion, suspension, inverse emulsion (in natural phase), and polymerization. figuring out those advancements will permit the reader to optimize particle method layout, giving upward thrust to a better software spectrum.

This book:

  • Focuses on synthesis and characterization of debris with core-shell morphologies
  • Details new release of nonspherical polymer debris utilizing varied artificial routes
  • Explores new release of particular architectures, comparable to block, megastar, graft, and gradient copolymer particles

The authors describe pH-responsive nanoparticles and shrewdpermanent, thermally responsive debris. additionally they disguise floor tailoring of varied natural and inorganic nanoparticles by way of polymers, in addition to theoretical experiences at the kinetics of managed radical polymerization concepts. Condensing and comparing present wisdom of the improvement of polymer nanoparticles, this reference will turn out a worthy addition to the realm of polymer latex know-how.

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Extra resources for Advanced Polymer Nanoparticles: Synthesis and Surface Modifications

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Journal of Polymer Science, Part A: Polymer Chemistry 34:1073–81. 17. , Sudol, E. , Dimonie, V. , and M. S. El-Aasser. 2002. Surfactant concentration effects on nitroxide-mediated living free radical miniemulsion poly­ mer­i­za­tion of styrene. Macromolecules 35:6915–19. 18. , Sudol, E. , Dimonie, V. , and M. S. El-Aasser. 2001. Nitroxide-mediated living free radical miniemulsion poly­mer­i­za­tion of styrene. Macromolecules 34:481–88. 19. , Tsarevsky, N. , and B. Charleux. 2000. Atom transfer radical poly­mer­iz­ a­tion of n-butyl methacrylate in an aqueous dispersed system: A miniemulsion approach.

European Polymer Journal 43:4868–81. 29. , Matsko, N. , and M. Morbidelli. 2008. Swelling deswelling behavior of PS-PNIPAAM copolymer particles and PNIPAAM brushes grafted from polystyrene particles & monoliths. Macromolecular Materials and Engineering 293:491–502. 30. , and M. J. Monteiro. 2004. Seeded emulsion poly­mer­i­za­tion of block copolymer core-shell nanoparticles with controlled particle size and molecular weight distribution using xanthate-based RAFT poly­mer­i­za­tion. Macromolecules 37:4474–83.

Block copolymer synthesis by a miniemulsion stable free radical poly­mer­i­za­tion process. Macromolecules 34:3594–99. 35. , Jahed, N. , and K. Matyjaszewski. 2004. Preparation of linear and star-shaped block copolymers by ATRP using simultaneous reverse and normal initiation process in bulk and miniemulsion. Macromolecules 37:2434–41. 28 Advanced Polymer Nanoparticles: Synthesis and Surface Modifications 36. , and K. Matyjaszewski. 2005. Preparation of gradient copolymers via ATRP using a simultaneous reverse and normal initiation process.

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