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Ultrahigh-molecular-weight polystyrene

PC PE PES PET PF PFA PI PMMA PP PPO PS PSO PTFE PTMT PU PVA PVAC PVC PVDC PVDF PVF TFE SAN SI TP TPX UF UHMWPE UPVC Polycarbonate Polyethylene Polyether sulfone Polyethylene terephthalate Phenol-formaldehyde Polyfluoro alkoxy Polyimide Polymethyl methacrylate Polypropylene Polyphenylene oxide Polystyrene Polysulfone Polytetrafluoroethylene Polytetramethylene terephthalate (thermoplastic polyester) Polyurethane Polyvinyl alcohol Polyvinyl acetate Polyvinyl chloride Polyvinyl idene chloride Polyvinylidene fluoride Polyvinyl fluoride Polytelrafluoroethylene Styrene-acrylonitrile Silicone Thermoplastic Elastomers Polymethylpentene Urea formaldehyde Ultrahigh-molecular-weight polyethylene Unplasticized polyvinyl chloride... [Pg.106]

TPS toughened polystyrene UHMWPE ultrahigh molecular weight polyethyl-... [Pg.615]

Figure 9.2 Oxygen-functionalized surfaces improve the attachment and culture of osteoblast-like cells in vitro. Scanning electron microscopy showing human primary osteoblast-like cells (isolated from femoral heads) cultured on ultrahigh molecular weight polyethylene (UHMWP) surfaces with increasing surface oxygen concentration and tissue culture polystyrene (TCPS). UV/ozone-treated UHMWP samples showed elevated cell densities of osteoblast-Mke cells and cell morphologies which paralleled those observed in vivo. Individual scale bars are shown on the SEM images of 10 and 20 pm, and for the optical microscope images (TCPS) the scale bar indicates 100 pm. Figure 9.2 Oxygen-functionalized surfaces improve the attachment and culture of osteoblast-like cells in vitro. Scanning electron microscopy showing human primary osteoblast-like cells (isolated from femoral heads) cultured on ultrahigh molecular weight polyethylene (UHMWP) surfaces with increasing surface oxygen concentration and tissue culture polystyrene (TCPS). UV/ozone-treated UHMWP samples showed elevated cell densities of osteoblast-Mke cells and cell morphologies which paralleled those observed in vivo. Individual scale bars are shown on the SEM images of 10 and 20 pm, and for the optical microscope images (TCPS) the scale bar indicates 100 pm.
The solubility in common solvents allows preparation of polymer blends based on solvent casting. Figure 36 shows the conductivity of PANI(DBSA)i,o solution blended with ultrahigh-molecular-weight polyethylene (UHMWPE) at different concentrations after evaporation of the xylene solvent [187, 188]. A low percolation limit can thus be obtained in solution processing of commodity polymers. Corresponding results are also obtained in blends with other polymers, such as polystyrene and polyamide 12. [Pg.202]

The emulsion polymerization of styrene was observed in the presence (Gao and Wu, 2005) and absence (Ngai and Wu, 2005) of surfactants imder microwave heating. The ultrahigh molecular weight polystyrene was synthesized in mini emnl-sion through fast heating and coohng by modem microwave reactors (Holtze and Antonietti, 2006). [Pg.331]


See other pages where Ultrahigh-molecular-weight polystyrene is mentioned: [Pg.69]    [Pg.458]    [Pg.146]    [Pg.93]    [Pg.18]    [Pg.395]    [Pg.220]    [Pg.417]    [Pg.52]    [Pg.56]    [Pg.678]    [Pg.23]    [Pg.626]    [Pg.115]    [Pg.337]    [Pg.64]    [Pg.372]    [Pg.376]    [Pg.218]    [Pg.1507]    [Pg.29]    [Pg.105]    [Pg.108]    [Pg.1886]    [Pg.1435]    [Pg.110]   
See also in sourсe #XX -- [ Pg.413 ]




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