By Rigoberto C. Advincula, William J. Brittain, Kenneth C. Caster, Jürgen Rühe

ISBN-10: 3527310339

ISBN-13: 9783527310333

Fabrics scientists, polymer chemists, floor physicists and fabrics engineers will locate this e-book an entire and special treatise at the box of polymer brushes, their synthesis, characterization and manifold functions. In a primary part, many of the artificial pathways and various floor fabrics are brought and defined, by means of a moment part protecting very important points of characterization and research in either flat surfaces and debris. those particular floor initiated polymerization (SIP) structures comparable to linear polymers, homopolymers, block copolymers, and hyperbranched polymers are distinct in comparison to formerly said structures via chemisorption or physisorption. they've got came upon their method in either large-scale and miniature purposes of polymer brushes, that's lined within the final part. Such 'hairy' surfaces provide attention-grabbing possibilities for addressing various difficulties of either educational and, particularly, business curiosity: fine quality, sensible or protecting coatings, composite fabrics, floor engineered debris, metal-organic interfaces, organic functions, micro-patterning, colloids, nanoparticles, useful units, and plenty of extra. it's the wish of the authors that this publication should be of profit to readers who are looking to "brush-up on polymers".

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Biesalski, J. Rühe, Macromolecules 1999, 32, 2309. 103 B. Peng, J. Rühe, D. Johannsmann, Adv. Mater. 2000, 12, 821. 104 B. Peng, D. Johannsmann, J. Rühe, Macro- molecules 1999, 32, 6759. 105 S. A. Prokhorova, A. Kopyshev, A. Ramak- rishnan, H. Zhang, J. Rühe, Nanotechnology 2003, 14, 1098. 106 B. Zhao, W. J. Brittain, W. S. Zhou, S. Z. D. Cheng, J. Am. Chem. Soc. 2000, 122, 2407. 107 S. Minko, D. Usov, E. Goreshnik, M. Stamm, Macromol. Rapid Commun. 2001, 22, 206. 108 A. Sidorenko, S. Minko, K.

A. Schlitt, University Hospital Mainz, Germany). Figure 5 6 Polymer Brushes: On the Way to Tailor-Made Surfaces become attached to the surfaces of the blood-exposed materials (Figure 5). Eventually, the blood clots can break off from the surface into the blood stream, where they pose a life-threatening situation for the patient [18]. It has been shown, that the application of just a polymer layer which is just a couple of nanometers thick can dramatically reduce the adhesion of the blood proteins and thereby greatly improve the blood compatibility of the material [20–22].

2002, 500, 61. : J. P. Andrade), Plenum Press, New York, 1985. B. Zhao, W. J. Brittain, Prog. Polym. Sci. 2000, 25, 677. J. Pyun, T. Kowalewski, K. Matyjaszewski, Macromol. Rapid Commun. 2003, 24, 1043. A. Halperin, M. Tirrell, T. P. Lodge, Adv. Polym. Sci. 1992, 100, 31. R. A. L. Jones, R. W. Richards, Polymers at Surfaces and Interfaces, Cambridge University Press, Cambridge, 1999. G. J. Fleer, M. A. Cohen Stuart, J. M. H. M. Scheutjens, T. Cosgrove, B. Vincent, Polymers at Interfaces, Chapman & Hall, London, 1993.

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Polymer Brushes by Rigoberto C. Advincula, William J. Brittain, Kenneth C. Caster, Jürgen Rühe


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