Polymer Surfaces And Interfaces Characterization Modification And Applications Pdf
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Once production of your article has started, you can track the status of your article via Track Your Accepted Article. Help expand a public dataset of research that support the SDGs. The journal Surfaces and Interfaces publishes new, original, up to date, and scientifically interesting topics in all research areas on surfaces and interfaces. The journal aims at being a fast and efficient platform for disseminating scientific results in this wide area of research. Fundamental, interdisciplinary
Surfaces and Interfaces
Interface gmail. User Username Password Remember me. The journal is concerned with high quality scientific research papers in all experimental and theoretical aspects including modelling of surfaces and interfaces of materials with significant applications in energy, environment, food, health. Criteria for publication in JASI are novelty, quality and current interest. Contributions must be in English and must not have been published elsewhere or simultaneously submitted for publication to any other journal.
Kaliske, G. Heinrich and E. Verron Eds. Stamm, Editor. Soedinenija, Ser. A 50
Polymeric materials have widespread application due to their versatile characteristics, cost-effectiveness, and highly tailored production. The science of polymer synthesis allows for excellent control over the properties of a bulk polymer sample. However, surface interactions of polymer substrates are an essential area of study in biotechnology , nanotechnology, and in all forms of coating applications. In these cases, the surface characteristics of the polymer and material, and the resulting forces between them largely determine its utility and reliability. In biomedical applications for example, the bodily response to foreign material, and thus biocompatibility, is governed by surface interactions. In addition, surface science is integral part of the formulation, manufacturing, and application of coatings. A polymeric material can be functionalized by the addition of small moieties, oligomers, and even other polymers grafting copolymers onto the surface or interface.
This article reviews the recent applications of time-of-flight secondary ion mass spectrometry in the determination of surface structures of semicrystralline and amorphous polymer films. Examples given include the determination of end-group distributions on semicrystalline polymer surfaces, lamellar orientation on thin-film surfaces, the structures of the folds of lamellae, the morphologies of polymer blends, the relationship between film stability and the concentration of the end groups, and the structures of thin polymer films. The surface properties of polymers are important for many applications such as adhesion, biomaterials, protective coatings, friction and wear, composites, microelectronic devices, and thin-film technology. As these surface properties are ultimately governed by the molecular structures of the outermost layers of the polymers, surface analysis is an indispensable tool for the design and development of polymeric systems. Among the surface analysis techniques available, X-ray photoelectron spectroscopy XPS is undoubtedly the most widely adopted for polymers because of the ease with which the resulting data could be interpreted, not to mention its suitability for insulating materials. The main strength of XPS is that it gives quantitative elemental composition and chemical functionality information, which has been extensively explored in polymeric materials Chan , Briggs However, as the demands for higher surface sensitivity and more precision continue to grow with the complexity of polymeric systems, XPS has been found lacking in its ability to provide the full picture.
Oleksandr Burtovyy , Clemson University Follow. The composition and behavior of surfaces and interfaces play a pivotal role in dictating the overall efficiency of the majority of polymeric materials and devices. Surface properties of the materials can be altered using surface modification techniques. It is necessary to highlight that successful methods of surface modification should affect only the upper layer of the polymer material without changing bulk properties. Research presented in this dissertation is dedicated to the synthesis, characterization, and application of thin macromolecular layers anchored to polymer substrates. Specifically, attachment of functional polymers via a 'grafting to' approach has been extensively studied using PET and nylon model substrates. First, poly glycidyl methacrylate was used to introduce permanent functionalities to the model substrates by anchoring it to model films.
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