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Surface modification grafting

Engineering Blood-Contact Biomaterials by "H-Bond Grafting" Surface Modification... [Pg.179]

H-Bond Grafting" Surface Modification for Blood-Contact Polyurethane Biomaterials... [Pg.200]

Wang, D.-A. Engineering Blood-Contact Biomaterials by H-Bond Grafting Surface Modification. Vol. 209, pp. 179-227... [Pg.231]

Wang DA (2007) Engineering blood-contad biomaterials by H-Bond Grafting surface modification. Adv Polym Sd 209 179-227... [Pg.205]

Radiation-induced grafting and curing processes have been discussed in a number of reviews.203 28 291 The process is widely used for surface modification. Recent applications are the modification of fuel cell membranes and improving... [Pg.389]

Table 24 Surface implications in polyphosphazenes surface modification by grafting reactions... Table 24 Surface implications in polyphosphazenes surface modification by grafting reactions...
Teramura Y, Iwata H (2011) Improvement of graft survival by surface modification with poly (ethylene glycol)-lipid and urokinase in intraportal islet transplantation. Transplantation 91 271-278... [Pg.199]

Teramura Y, Iwata H (2009) Surface modification of islets with PEG-lipid for improvement of graft survival in intraportal transplantation. Transplantation 88 624-630... [Pg.199]

Hu SW, Ren X, Bachman M, Sims CE, Li GP, Allbritton NL (2002) Surface modification of poly(dimethylsiloxane) microfluidic devices by ultraviolet polymer grafting. Anal Chem 74 4117 Hunter RJ (1981) Zeta potential in colloid science. Academic Press, London Jensen KF (2001) Microreaction engineering is small better Chem Eng Sci 56 293... [Pg.37]

In dentistry, silicones are primarily used as dental-impression materials where chemical- and bioinertness are critical, and, thus, thoroughly evaluated.546 The development of a method for the detection of antibodies to silicones has been reviewed,547 as the search for novel silicone biomaterials continues. Thus, aromatic polyamide-silicone resins have been reviewed as a new class of biomaterials.548 In a short review, the comparison of silicones with their major competitor in biomaterials, polyurethanes, has been conducted.549 But silicones are also used in the modification of polyurethanes and other polymers via co-polymerization, formation of IPNs, blending, or functionalization by grafting, affecting both bulk and surface characteristics of the materials, as discussed in the recent reviews.550-552 A number of papers deal specifically with surface modification of silicones for medical applications, as described in a recent reference.555 The role of silicones in biodegradable polyurethane co-polymers,554 and in other hydrolytically degradable co-polymers,555 was recently studied. [Pg.681]

In the present discussions, we neglect the effects of homo-polymer formation. HomopolyAM deposited on OPP surface in the course of grafting may prevent diffusion of AM to the grafting site, which may slow down the rate of grafting. It is however difficult to explain by this reasoning the change in time-conversion profile as a function of [AM]/[BP] ratio. Since our aim is surface modification, the amount of homopolymer was not determined. ... [Pg.226]


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See also in sourсe #XX -- [ Pg.68 ]




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Graft modification

Grafted surfaces

Grafting modification

Local chemical modification surface grafting

Modification of graft surface

Modification of graft surfaces for

Modification surface-initiated grafting

PDMS Surface Modification chemical grafting

Surface grafts

Surface modification graft copolymerization

Surface modification initiated grafting polymerization

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