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Anionic polymerization[electronic re...
~
Hadjichristidis, Nikos.
Anionic polymerization[electronic resource] :principles, practice, strength, consequences and applications /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
547.28
書名/作者:
Anionic polymerization : principles, practice, strength, consequences and applications // edited by Nikos Hadjichristidis, Akira Hirao.
其他作者:
Hadjichristidis, Nikos.
出版者:
Tokyo : : Springer Japan :, 2015.
面頁冊數:
ix, 1082 p. : : ill., digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Addition polymerization.
標題:
Carbanions.
標題:
Chemistry.
標題:
Polymer Sciences.
標題:
Nanotechnology.
標題:
Physical Chemistry.
ISBN:
9784431541868
ISBN:
9784431541851
內容註:
Schlenk Techniques for Anionic Polymerization -- High Vacuum Techniques for Anionic Polymerization -- Non-Polar Monomers: Styrene and 1,3-Butadiene Derivatives -- Anionic Polymerization of Polar Vinyl Monomers: Vinylpyridines, (Meth)acrylates, (Meth)acrylamides, (Meth)acrylonitrile, Phenyl Vinyl Sulfoxide, Benzofulvene and Other Monomers -- Cyclic Monomers: Epoxides, Lactide, Lactones, Lactams, Cyclic Silicon-containing monomers, Cyclic Carbonates and others -- Ring-opening polymerization of N-carboxyanhydrides for preparation of polypeptides and polypeptide-based hybrid materials with various molecular architectures -- Living Anionic Polymerization of Isocyanates -- Poly(ferrocenylsilanes) with controlled macromolecular architecture by anionic polymerization: Applications in patterning and lithography -- Polymerization Using Phosphazene Bases -- Group Transfer Polymerization of Acrylic Monomers -- Surface Initiated Anionic Polymerization from Nanomaterials -- Block Copolymers by Anionic Polymerization: Recent Synthetic Routes and Developments -- Graft and Comblike Polymers -- Star-Branched Polymers (Star Polymers) -- Synthesis of Dendrimer-like Polymers -- Complex Branched Polymers -- Block Copolymers Containing Polythiophene Segments -- Block Copolymers and Miktoarm Star-Branched Polymers -- Control of Surface Structure and Dynamics of Polymers Based on Precision Synthesis -- Block Copolymers as Anti-fouling and Fouling Resistant Coatings -- Micellar Structures from Anionically Synthesized Block Copolymers -- Block Copolymers for Self-assembling Lithographic Materials -- Methacrylate-Based Polymers for Industrial Uses -- The Critical Role of Anionic Polymerization for Advances in the Physics of Polyolefins -- Future Remarks.
摘要、提要註:
This book presents these important facts: a) The mechanism of anionic polymerization, a more than 50-year challenge in polymer chemistry, has now become better understood; b) Precise synthesis of many polymers with novel architectures (triblock, multi-block, graft, exact graft, comb, cyclic, many armed stars with multi-components, dendrimer-like hyper-branched, and their structural mixed (co)polymers, etc.) have been advanced significantly; c) Based on such polymers, new morphological and self-organizing nano-objects and supramolecular assemblies have been created and widely studied and are considered nanodevices in the fields of nanoscience and technology; d) New high-tech and industrial applications for polymeric materials synthesized by anionic polymerization have been proposed. These remarkable developments have taken place in the last 15 years. Anionic polymerization continues to be the only truly living polymerization system (100 % termination free under appropriate conditions) and consequently the only one with unique capabilities in the synthesis of well-defined (i.e., precisely controlled molecular weight, nearly mono-disperse molecular weight distribution, structural and compositional homogeneity) complex macromolecular architectures. This book, with contributions from the world's leading specialists, will be useful for all researchers, including students, working in universities, in research organizations, and in industry.
電子資源:
http://dx.doi.org/10.1007/978-4-431-54186-8
Anionic polymerization[electronic resource] :principles, practice, strength, consequences and applications /
Anionic polymerization
principles, practice, strength, consequences and applications /[electronic resource] :edited by Nikos Hadjichristidis, Akira Hirao. - Tokyo :Springer Japan :2015. - ix, 1082 p. :ill., digital ;24 cm.
Schlenk Techniques for Anionic Polymerization -- High Vacuum Techniques for Anionic Polymerization -- Non-Polar Monomers: Styrene and 1,3-Butadiene Derivatives -- Anionic Polymerization of Polar Vinyl Monomers: Vinylpyridines, (Meth)acrylates, (Meth)acrylamides, (Meth)acrylonitrile, Phenyl Vinyl Sulfoxide, Benzofulvene and Other Monomers -- Cyclic Monomers: Epoxides, Lactide, Lactones, Lactams, Cyclic Silicon-containing monomers, Cyclic Carbonates and others -- Ring-opening polymerization of N-carboxyanhydrides for preparation of polypeptides and polypeptide-based hybrid materials with various molecular architectures -- Living Anionic Polymerization of Isocyanates -- Poly(ferrocenylsilanes) with controlled macromolecular architecture by anionic polymerization: Applications in patterning and lithography -- Polymerization Using Phosphazene Bases -- Group Transfer Polymerization of Acrylic Monomers -- Surface Initiated Anionic Polymerization from Nanomaterials -- Block Copolymers by Anionic Polymerization: Recent Synthetic Routes and Developments -- Graft and Comblike Polymers -- Star-Branched Polymers (Star Polymers) -- Synthesis of Dendrimer-like Polymers -- Complex Branched Polymers -- Block Copolymers Containing Polythiophene Segments -- Block Copolymers and Miktoarm Star-Branched Polymers -- Control of Surface Structure and Dynamics of Polymers Based on Precision Synthesis -- Block Copolymers as Anti-fouling and Fouling Resistant Coatings -- Micellar Structures from Anionically Synthesized Block Copolymers -- Block Copolymers for Self-assembling Lithographic Materials -- Methacrylate-Based Polymers for Industrial Uses -- The Critical Role of Anionic Polymerization for Advances in the Physics of Polyolefins -- Future Remarks.
This book presents these important facts: a) The mechanism of anionic polymerization, a more than 50-year challenge in polymer chemistry, has now become better understood; b) Precise synthesis of many polymers with novel architectures (triblock, multi-block, graft, exact graft, comb, cyclic, many armed stars with multi-components, dendrimer-like hyper-branched, and their structural mixed (co)polymers, etc.) have been advanced significantly; c) Based on such polymers, new morphological and self-organizing nano-objects and supramolecular assemblies have been created and widely studied and are considered nanodevices in the fields of nanoscience and technology; d) New high-tech and industrial applications for polymeric materials synthesized by anionic polymerization have been proposed. These remarkable developments have taken place in the last 15 years. Anionic polymerization continues to be the only truly living polymerization system (100 % termination free under appropriate conditions) and consequently the only one with unique capabilities in the synthesis of well-defined (i.e., precisely controlled molecular weight, nearly mono-disperse molecular weight distribution, structural and compositional homogeneity) complex macromolecular architectures. This book, with contributions from the world's leading specialists, will be useful for all researchers, including students, working in universities, in research organizations, and in industry.
ISBN: 9784431541868
Standard No.: 10.1007/978-4-431-54186-8doiSubjects--Topical Terms:
634804
Addition polymerization.
LC Class. No.: QD281.P6
Dewey Class. No.: 547.28
Anionic polymerization[electronic resource] :principles, practice, strength, consequences and applications /
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Schlenk Techniques for Anionic Polymerization -- High Vacuum Techniques for Anionic Polymerization -- Non-Polar Monomers: Styrene and 1,3-Butadiene Derivatives -- Anionic Polymerization of Polar Vinyl Monomers: Vinylpyridines, (Meth)acrylates, (Meth)acrylamides, (Meth)acrylonitrile, Phenyl Vinyl Sulfoxide, Benzofulvene and Other Monomers -- Cyclic Monomers: Epoxides, Lactide, Lactones, Lactams, Cyclic Silicon-containing monomers, Cyclic Carbonates and others -- Ring-opening polymerization of N-carboxyanhydrides for preparation of polypeptides and polypeptide-based hybrid materials with various molecular architectures -- Living Anionic Polymerization of Isocyanates -- Poly(ferrocenylsilanes) with controlled macromolecular architecture by anionic polymerization: Applications in patterning and lithography -- Polymerization Using Phosphazene Bases -- Group Transfer Polymerization of Acrylic Monomers -- Surface Initiated Anionic Polymerization from Nanomaterials -- Block Copolymers by Anionic Polymerization: Recent Synthetic Routes and Developments -- Graft and Comblike Polymers -- Star-Branched Polymers (Star Polymers) -- Synthesis of Dendrimer-like Polymers -- Complex Branched Polymers -- Block Copolymers Containing Polythiophene Segments -- Block Copolymers and Miktoarm Star-Branched Polymers -- Control of Surface Structure and Dynamics of Polymers Based on Precision Synthesis -- Block Copolymers as Anti-fouling and Fouling Resistant Coatings -- Micellar Structures from Anionically Synthesized Block Copolymers -- Block Copolymers for Self-assembling Lithographic Materials -- Methacrylate-Based Polymers for Industrial Uses -- The Critical Role of Anionic Polymerization for Advances in the Physics of Polyolefins -- Future Remarks.
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This book presents these important facts: a) The mechanism of anionic polymerization, a more than 50-year challenge in polymer chemistry, has now become better understood; b) Precise synthesis of many polymers with novel architectures (triblock, multi-block, graft, exact graft, comb, cyclic, many armed stars with multi-components, dendrimer-like hyper-branched, and their structural mixed (co)polymers, etc.) have been advanced significantly; c) Based on such polymers, new morphological and self-organizing nano-objects and supramolecular assemblies have been created and widely studied and are considered nanodevices in the fields of nanoscience and technology; d) New high-tech and industrial applications for polymeric materials synthesized by anionic polymerization have been proposed. These remarkable developments have taken place in the last 15 years. Anionic polymerization continues to be the only truly living polymerization system (100 % termination free under appropriate conditions) and consequently the only one with unique capabilities in the synthesis of well-defined (i.e., precisely controlled molecular weight, nearly mono-disperse molecular weight distribution, structural and compositional homogeneity) complex macromolecular architectures. This book, with contributions from the world's leading specialists, will be useful for all researchers, including students, working in universities, in research organizations, and in industry.
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