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Titlebook: Surface and Interfacial Aspects of Biomedical Polymers; Volume 1 Surface Che Joseph D. Andrade Book 1985 Plenum Press, New York 1985 X-ray.

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Polymer Surface Dynamics,ond, reorient, or otherwise change in the different liquid environments. Although such assumptions may be partially correct for truly rigid solids, they are generally inappropriate for polymers (see also Chapter 7).
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Introduction to Surface Chemistry and Physics of Polymers,ance of polymer surface properties in many major industries and in technology in general, good textbooks and monographs are readily available, including several focusing on biomedical problems (Table 1).
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Polymer Surface Dynamics,etting or contact angle processes purely from the point of view of the liquid phase, because one assumes that the solid phase does not in any way respond, reorient, or otherwise change in the different liquid environments. Although such assumptions may be partially correct for truly rigid solids, th
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Polymeric Oriented Monolayers and Multilayers as Model Surfaces,. Phospholipids and cholesterol represent the major part of the lipids of a biomembrane. Figure 2 illustrates the structure of some typical amphiphilic membrane components with hydrophobic alkyl chains and hydrophilic head groups. The amount of protein in biological membranes varies between 40 and 6
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X-ray Photoelectron Spectroscopy (XPS),ical polymers.. This technique, also called ESCA (Electron Spectroscopy for Chemical Analysis), provides a total elemental analysis, except for hydrogen and helium, of the top 10–200 Å (depending on the sample and instrumental conditions) of any solid surface which is vacuum stable or can be made va
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