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Titlebook: Biologically Modified Polymeric Biomaterial Surfaces; E. Piskin Book 1992 Elsevier Science Publishers Ltd 1992 biomaterial.spectroscopy.su

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https://doi.org/10.1057/9780230523876t the air/water interface, a multi-variate, multi-axes treatment of protein adsorption behavior is developed: the Tatra plot. By the careful placement and scaling of radial axes, representing 12 protein, surface, and interface parameters, one can begin to deduce various correlations between these pa
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Niklas Arvidsson,Julian Birkinshaw Information is obtained on the overall adsorption rather than on specific sites of the protein molecules that interact with the surface. In line with this, the interpretation of the experimental data involves thermodynamic arguments and, consequently, the issue of the extent to which the adsorption
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https://doi.org/10.1007/978-3-319-00342-9h were different in respect to functional groups, hydrophobicity or surface mobility were investigated. Surfaces were characterized by ellipsometry, electron spectroscopy for chemical analysis (ESCA) and contact angle measurements. It was demonstrated that the ratio of the pressures after ignition a
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Knowledge Generation and Protectiong an adhesion tension-solute adsorption relationship proposed by LucassenReynders. A positive slope of adhesion tension versus surface tension line found with polymethyl methacrylate is characteristic of polar surfaces and is attributed to the side-chain . relaxations of polymer ester methyl groups
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https://doi.org/10.1007/978-1-4419-1264-0hydroxyl, amino and carboxyl groups on their surfaces were produced by following a two-step polymerization procedure. The effects of pH and ionic strength of the medium on BSA adsorption capacity of the latices were investigated in the existence of two different anions and three different cations, C
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