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Titlebook: Nano-size Polymers; Preparation, Propert Stoyko Fakirov Book 2016 Springer International Publishing Switzerland 2016 Electrospinning.Electr

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h.Compares and contrasts the properties of nanomaterials witThis book details all current techniques for converting bulk polymers into nano-size materials.  The authors highlight various physical and chemical approaches for preparation of nano-size polymers. They describe the properties of these mat
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Nanostructured and Nano-size Polymer Materials: How to Generate Them and Do We Need Them?es and solutions. This book provides a review in particular on the class of nano-size polymer materials, their generation, characterization, properties, and application potential. The wide variability and large potential of those materials is shown ranging from improved engineering to energy-storage and biomedical applications for instance.
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ials.  The authors highlight various physical and chemical approaches for preparation of nano-size polymers. They describe the properties of these materials and their extensive potential commercial applications.978-3-319-81948-8978-3-319-39715-3
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Electrospun Polymer Nanofiber Separators and Electrolyte Membranes for Energy Storage and Conversiond surface modification methods. Moreover, physical and electrochemical properties of these electrospun nanofiber-based separators and electrolyte membranes have been thoroughly investigated for energy storage and conversion applications in high-performance lithium-ion batteries and proton exchange membrane fuel cells.
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Nanostructured and Nano-size Polymer Materials: How to Generate Them and Do We Need Them?nvironmental problems. Going to nanoscale offers many possibilities, where nanostructured and nano-size polymer materials provide interesting properties and solutions. This book provides a review in particular on the class of nano-size polymer materials, their generation, characterization, propertie
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Direct Synthesis of Nano-size Polymers by Microemulsion Polymerizationmical, or γ-irradiation), occurs in monomer reservoirs encapsulated in the nano-size space of microemulsion structures, producing thermodynamically stable nano-size latexes (<50 nm) of high molecular weight (>10.) polymers. Millions of tons of polymer microlatexes are thus produced annually, some no
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