Advanced functional polymer membranes
Передовые функциональные полимерные мембраны
2006-03-01
SCID: 54.1/2pmbfb48
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composite membranesmembrane separationpolymeric membranesself-assemblysurface functionalization
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Abstract (AI)
This feature article provides a comprehensive overview on the development of polymeric membranes having advanced or novel functions in the various membrane separation processes for liquid and gaseous mixtures (gas separation, reverse osmosis, pervaporation, nanofiltration, ultrafiltration, microfiltration) and in other important applications of membranes such as biomaterials, catalysis (including fuel cell systems) or lab-on-chip technologies. Important approaches toward this aim include novel processing technologies of polymers for membranes, the synthesis of novel polymers with well-defined structure as ‘designed’ membrane materials, advanced surface functionalizations of membranes, the use of templates for creating ‘tailored’ barrier or surface structures for membranes and the preparation of composite membranes for the synergistic combination of different functions by different (mainly polymeric) materials. Self-assembly of macromolecular structures is one important concept in all of the routes outlined above. These rather diverse approaches are systematically organized and explained by using many examples from the literature and with a particular emphasis on the research of the author's group(s). The structures and functions of these advanced polymer membranes are evaluated with respect to improved or novel performance, and the potential implications of those developments for the future of membrane technology are discussed.
Key Findings
1
Advanced membrane structures and functions can improve or introduce performance in separation, biomaterials, catalysis, fuel cells, and lab-on-chip technologies.
2
Advanced polymer membranes are developed for diverse separation processes, including gas separation, reverse osmosis, pervaporation, nanofiltration, ultrafiltration, and microfiltration.
3
Novel polymer-processing technologies and well-defined polymer synthesis enable membranes with designed structures and advanced functions.
4
Self-assembly of macromolecular structures is a unifying concept across multiple approaches to producing functional polymer membranes.
5
Surface functionalization, templating, and composite-membrane strategies create tailored barrier or surface structures and combine complementary material functions.
Research Object
advanced functional polymer membranes used in membrane separation and related applications
Research Subject
their structures, functionalization strategies, and resulting improved or novel performance
Publication Details
Publication Date
2006-03-01
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