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Carbon nanotubes surface modifications: an overview / Vikas Mittal -- Modification of carbon nanotubes by layer-by-layer assembly approach / Vaibhav Jain and Akshay Kokil -- Noncovalent functionalization of electrically conductive nanotubes by multiple ionic or [pi]-[pi] stacking interactions with block copolymers / Petar Petrov and Levon Terlemezyan -- Modification of nanotubes with conjugated block copolymers / Jianhua Zou [and others] -- Theoretical analysis of nanotube functionalization and polymer grafting / Kausala Mylvaganam and Liang Chi Zhang -- Covalent binding of nanoparticles on carbon nanotubes / Daxiang Cui -- Amine-functionalized carbon nanotubes / Ramaiyan Kannan and Vijayamohanan K. Pillai -- Functionalization of nanotubes by ring-opening and anionic surface initiated polymerization / Georgios Sakellariou, Dimitrios Priftis, and Nikos Hadjichristidis -- Grafting of polymers on nanotubes by atom transfer radical polymerization / Chao Gao -- Polymer grafting onto carbon nanotubes via cationic ring-opening polymerization / Ye Liu and Decheng Wu -- Plasma deposition of polymer film on nanotubes / Chuh-Yung Chen -- Functionalization of carbon nanotubes by polymers using grafting to methods / Jean-Michel Thomassin [and others] -- Organic functionalization of nanotubes by dipolar cycloaddition / Vassilios Georgakilas and Dimitrios Gournis.
The book series ""Polymer Nano-, Micro- and Macrocomposites"" provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to, synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfield of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with infomation relevant to their researc
Carbon nanotubes surface modifications: an overview / Vikas Mittal -- Modification of carbon nanotubes by layer-by-layer assembly approach / Vaibhav Jain and Akshay Kokil -- Noncovalent functionalization of electrically conductive nanotubes by multiple ionic or [pi]-[pi] stacking interactions with block copolymers / Petar Petrov and Levon Terlemezyan -- Modification of nanotubes with conjugated block copolymers / Jianhua Zou [and others] -- Theoretical analysis of nanotube functionalization and polymer grafting / Kausala Mylvaganam and Liang Chi Zhang -- Covalent binding of nanoparticles on carbon nanotubes / Daxiang Cui -- Amine-functionalized carbon nanotubes / Ramaiyan Kannan and Vijayamohanan K. Pillai -- Functionalization of nanotubes by ring-opening and anionic surface initiated polymerization / Georgios Sakellariou, Dimitrios Priftis, and Nikos Hadjichristidis -- Grafting of polymers on nanotubes by atom transfer radical polymerization / Chao Gao -- Polymer grafting onto carbon nanotubes via cationic ring-opening polymerization / Ye Liu and Decheng Wu -- Plasma deposition of polymer film on nanotubes / Chuh-Yung Chen -- Functionalization of carbon nanotubes by polymers using grafting to methods / Jean-Michel Thomassin [and others] -- Organic functionalization of nanotubes by dipolar cycloaddition / Vassilios Georgakilas and Dimitrios Gournis.
The book series ""Polymer Nano-, Micro- and Macrocomposites"" provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to, synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfield of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with infomation relevant to their researc
Surface modification of nanotube fillers
2011
1 Online-Ressource (xv, 316 pages)
illustrations (some color)
Includes bibliographical references and index
Buch
Elektronische Ressource
Englisch
DDC:
621.3815
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