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Microgels fabrication

Microfluidic devices, 26 959 effect of scale on, 26 960t fabrication of, 26 963-966 Microfluidics, 26 959-980 applications of, 26 966-975 basic features of, 26 959-966 future directions for, 26 976-977 history of, 26 959 industrial impact of, 26 976 Microfluidic structures fabrication of, 26 963-966 MicroFluidic Systems, 26 976 Micro-gas chromatography (micro-GC), 6 434 37 Microgel particles... [Pg.585]

Rgure 8.6 Representation of the variety of polymer morphologies in solution and in the gel (or microgel) or solid states. In solution the conformation of the polymer depends on the nature of polymer-solvent interactions and whether or not the polymer chains associate to form micellar aggregates. Crystals of polymer and microcrystals can be prepared, and gels can be formed from covalently crosslinked or polymer chains associated by hydrogen bonding or hydrophobic interactions. Listed are the forms in which most polymers can be fabricated membranes, fibres, composites, matrices microspheres and microcapsules can also feature, as discussed later in this chapter. [Pg.280]

G.H. Ma and T. Fukutomi, Preparation and chemical fixation of poly(4-vinylpyridine) microgel film with ordered structure, Macromolecules, 1992, 25, 1870-1875 M. Takizawa, Y. Sugimoto, S. Doi, Y. Isono, M. Nakamura, S. Horiguchi and T. Fukutomi, Fabrication of novel charge-mosaic membranes using microsphere and their application, Curr. Trends Polym. Sci., 2001, 6, 59-66. [Pg.77]

Majcen, N., 2008. The Development of Novel Smart Wound Dressings Based on Colloidal Microgels and Cotton Fabric (PhD thesis). Greenwich, University of Greenwich. [Pg.90]

J. Kim, A. Utada, A. Fernandez-Nieves, Z. Hu, and D. Weitz, Fabrication of monodisperse gel shells and functional microgels in microfluidic devices, Angewandte Chemie International Edition in English, 46, 1819-1822, 2007. [Pg.378]

S. D. Seiffert, Controlled fabrication of polymer microgels by polymer analogous gelation in droplet microfluidics. Soft Matter, 6, 3184-3190, 2010. [Pg.378]

Fig. 27 (a) Schematic of a traditional Fabry-Perot etalon (d, distance between two mirrors n, refractive index of the dielectric), (b) Schematic structure and proposed mechanism for our poly (N-isopropylacrylamide) microgel based etalons fabricated by sandwiching (b) a mictogel layer between (a, c) two reflective Cr/Au surfaces, all on (d) a cover glass. Reproduced with permission from [102]... [Pg.405]

Sorrell CD, Carter MCD, Serpe MJ (2011) A paint-on protocol for the facile assembly of uniform microgel coatings for color tunable etalon fabrication. ACS Appl Mater Interfaces 3 1140... [Pg.423]

In an attempt to use PG microgels as scaffolds for the synthesis of ceU-laden microparticles, Steinhilber et al. [29] applied the microfluidic approach to fabricate miaogels that were highly loaded with yeast cells. The polymer matrix allowed the cells to metabolize so that a good percentage of the cells stayed alive for more than 12h after the particle formation. [Pg.258]

Ma S, Thiele J, Liu X et al (2012) Fabrication of microgel particles with complex shape via selective polymerization of aqueous two-phase systems. Small 8 2356-2360... [Pg.208]


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