Polyelectrolyte Complexes In The Dispersed And Solid State Ii


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Polyelectrolyte Complexes in the Dispersed and Solid State II


Polyelectrolyte Complexes in the Dispersed and Solid State II

Author: Martin Müller

language: en

Publisher: Springer

Release Date: 2013-08-23


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Polyelectrolyte Complexes for Tailoring of Wood Fibre Surfaces. Polyelectrolyte Complexes in Flocculation Applications. Spontaneous Assembly and Induced Aggregation of Food Proteins. Polyelectrolyte Complexes of DNA and Polycations as Gene Delivery Vectors. Sizing, Shaping and Pharmaceutical Applications of Polyelectrolyte Complex Nanoparticles.

Polyelectrolyte Complexes in the Dispersed and Solid State I


Polyelectrolyte Complexes in the Dispersed and Solid State I

Author: Martin Müller

language: en

Publisher: Springer

Release Date: 2014-07-08


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Advances in Polymer Science enjoys a longstanding tradition and good reputation in its community. Each volume is dedicated to a current topic, and each review critically surveys one aspect of that topic, to place it within the context of the volume. The volumes typically summarize the significant developments of the last 5 to 10 years and discuss them critically, presenting selected examples, explaining and illustrating the important principles, and bringing together many important references of primary literature. On that basis, future research directions in the area can be discussed. Advances in Polymer Science volumes thus are important references for every polymer scientist, as well as for other scientists interested in polymer science - as an introduction to a neighboring field, or as a compilation of detailed information for the specialist.

Macromolecular Self-Assembly


Macromolecular Self-Assembly

Author: Laurent Billon

language: en

Publisher: John Wiley & Sons

Release Date: 2016-09-06


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This book describes techniques of synthesis and self-assembly of macromolecules for developing new materials and improving functionality of existing ones. Because self-assembly emulates how nature creates complex systems, they likely have the best chance at succeeding in real-world biomedical applications. • Employs synthetic chemistry, physical chemistry, and materials science principles and techniques • Emphasizes self-assembly in solutions (particularly, aqueous solutions) and at solid-liquid interfaces • Describes polymer assembly driven by multitude interactions, including solvophobic, electrostatic, and obligatory co-assembly • Illustrates assembly of bio-hybrid macromolecules and applications in biomedical engineering