1 edition of Carbon nanotube-polymer composites found in the catalog.
Written in English
Includes bibliographical references and index.
|Statement||edited by Dimitrios Tasis, Department of Materials Science, University of Patras, Greece. Email: [email protected]|
|Series||RSC nanoscience & nanotechnology -- number 27, RSC nanoscience & nanotechnology -- 27.|
|LC Classifications||TA418.9.N35 .C378 2013|
|The Physical Object|
|Pagination||xi, 279 pages|
|Number of Pages||279|
The effects of the aspect ratio of carbon nanotube reinforcements on the elastic properties, i.e. Young's modulus and yield strength, of the interfacial region and the nanotube/polymer Cited by: About Carbon Nanotube-Polymer Composites: Carbon Nanotube Fibres and Yarns for Smart Textiles: Production, Properties and Applications in Smart Textiles explains the relevance of carbon nanotube science and provides new insights on this emerging, high-performance textile material. Finally, the book addresses advances in yarn spinning.
CARBON NANOTUBE/POLYMER COMPOSITES AND NOVEL MICRO- AND NANO- STRUCTURED ELECTROSPUN POLYMER MATERIALS A Thesis Presented to The Academic Faculty by Jing Liu In Partial Fulfillment of the Requirements for the Degree Doctor of Philosophy in the School of Polymer, Textile & Fiber Engineering Georgia Institute of Technology May research on carbon nanotube composites are reviewed. The interfacial bonding properties, mechanical performance, electrical percolation of nanotube/polymer and ceramic are also reviewed. INTRODUCTION Carbon nanotube Elemental carbon in the sp2 hybridization can form a variety1 of amazing structures. Apart from the well-known graphite, carbonFile Size: KB.
This book provides readers with a comprehensive toolbox for dispersing single-walled and multiwalled carbon nanotubes in thermoplastic polymer matrices. The book starts with an overview of all known techniques for dispersing CNTs in thermoplastic polymers and then concentrates on one of the most versatile techniques known nowadays: the so. Main Carbon Nanotube-Polymer Composites Carbon Nanotube-Polymer Composites Dimitrios Tasis, Paul O'Brien, Ralph Nuzzo, Harry Kroto, Chao Gao, Jin Han, Yurii Gun'ko, Jian Chen, Sang-ha Hwang, In-Yup Jeon, Young-Bin Park, Jong-Beom Baek, Yumeng Shi, Lain-Jong Li, Luca Valentini, Debora Puglia, Jose M Kenny, Kenneth N Tackett II, P.
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Bringing together thousands of disparate research works, Carbon Nanotube-Polymer Composites: Manufacture, Properties, and Applications covers CNT-polymers from synthesis to potential applications, presenting the basic science and engineering of this dynamic and complex area in an accessible, readable way.
Designed to be of use to polymer scientists, engineers, chemists, physicists, and materials scientists, the book covers carbon nanotube fundamentals to help polymer experts understand CNTs, and polymer physics to help those in the CNT field, making it an invaluable resource for anyone working with CNT-polymer composites.
Abstract. A review of carbon nanotube (CNT) functionalization methods to improve the interfacial interactions with polymers is addressed.
The most common CNT functionalization methods to address the issue of interfacial interactions between CNTs and their host polymer matrix in Carbon nanotube-polymer composites book polymer composites are discussed. This chapter provides an in-depth coverage of recent advances in the areas of the development and characterization of electro-optically active, device-grade carbon nanotube (CNT)–polymer blends.
These new organic–inorganic multifunctional nanocomposites share many advanced characteristics which make them ideally suited for industrial scale, high-throughput manufacturing of lightweight Cited by: 1. Carbon Nanotube-Reinforced Polymers: From Nanoscale to Macroscale addresses the advances in nanotechnology that have led to the development of a new class of composite materials known as CNT-reinforced polymers.
The low density and high aspect ratio, together with their exceptional mechanical, electrical and thermal properties, render carbon nanotubes as a good reinforcing agent for composites.
Bringing together thousands of disparate research works, Carbon Nanotube-Polymer Composites: Manufacture, Properties, and Applications covers CNT-polymers from synthesis to potential applications, presenting the basic science and engineering of this dynamic and Cited by: Bringing together thousands of disparate research works, Carbon Nanotube-Polymer Composites: Manufacture, Properties, and Applications covers CNT-polymers from synthesis to potential applications, presenting the basic science and engineering of this dynamic and complex area in an accessible, readable : Wiley.
Book Author(s): Brian P. Grady Carbon Nanotube Technology Center (CaNTeC), the Institute for Applied Surfactant Research (IASR), and School of Chemical, Biological, and Materials Engineering University of Oklahoma, Norman, Oklahoma, USA.
With its distinguished editors and international team of contributors, Polymer-carbon nanotube composites is an essential reference for scientists, engineers and designers in high-tech industry and academia with an interest in polymer nanotechnology and nanocomposites.
The present chapter covers the designing, development, properties and applications of carbon nanotube-loaded polymer composites. The first section will provide a brief overview of carbon nanotubes (CNTs), their synthesis, properties and functionalization routes.
The second section will shed light on the CNT/polymer composites, their types, synthesis routes and by: Carbon Nanotube-Polymer Composites (ISSN Book 27) and millions of other books are available for Amazon Kindle.
Learn more Polymer-Carbon Nanotube Composites: Preparation, Properties and Applications (Woodhead Publishing Series in Composites Science and Engineering) 1st EditionAuthor: Tony McNally.
Carbon Nanotube-Polymer Composites. by Chao Gao,Yurii Gun'ko,Jian Chen,Jong-Beom Baek,Lain-Jong Li,Luca Valentini,Kostas Papagelis,Ya-Ping Sun,Petra Potschke,Paul O'Brien,Ralph Nuzzo,Harry Kroto.
Share your thoughts Complete your review. Tell readers what you thought by rating and reviewing this book. Rate it * You Rated it *Brand: Royal Society of Chemistry. In book: Nano- and Biocomposites, pp Cite this publication.
In addition, a rationale for optimally designed carbon nanotube polymer composites and their applications are suggested. Above. Chemically-modified carbon nanotubes (CNTs) exhibit a wide range of physical and chemical properties which makes them an attractive starting material for the preparation of super-strong and highly-conductive fibres and films.
Much information is available across the primary literature, making it difficult to obtain an overall picture of the state-of-the-art. ISBN: OCLC Number: Description: xi, pages: color illustrations ; 24 cm. Contents: Machine generated contents note: ch.
1 Conducting Polymer-based Carbon Nanotube Composites: Preparation and Applications / Jong-Beom Baek Discovery of Conducting Polymers Synthesis of Conducting Polymers Conductivity and Doping of. The accessible compendium of polymers in carbon nanotubes (CNTs) Carbon nanotubes (CNTs)—extremely thin tubes only a few nanometers in diameter but able to attain lengths thousands of times greater—are prime candidates for use in the development of polymer composite materials.
Bringing together thousands of disparate research works, Carbon Nanotube-Polymer Composites: Manufacture. Get this from a library. Carbon nanotube-polymer composites. [Dimitrios Tasis;] -- Chemically-modified carbon nanotubes (CNTs) exhibit a wide range of physical and chemical properties which makes them an attractive starting material for the preparation of super-strong and.
The dielectric properties of polymethylmetacrylate (PMMA) composites filled with CVD made multiwalled carbon nanotubes (MWCNT) of different mean outer diameters (d = 9 nm and 12–14 nm) were. Cohesive laws for van der Waals interactions of super carbon nanotube/polymer composites. Mechanics Research Communications72, DOI: /scom Liu Hong, Yusaku Takagaki, Hitoshi Yoshikawa, Naotoshi Nakashima.
Efficient Dispersion of “Super-Growth” Single-Walled Carbon Nanotubes Using a Copolymer of Cited by: Continue to access RSC content when you are not at your institution.
Follow our step-by-step guide. Carbon nanotubes (CNTs) represent a rare class of materials, which exhibit a number of outstanding properties in a single material system, such as high aspect ratio, small diameter, light weight, high mechanical strength, high electrical and thermal conductivities, and .Books Electrical Properties of Carbon Nanotube/Polymer Composites Arjmand M, Sundararaj U.
Saarbrücken: Scholars’ Press; ISBN Book Chapters Arjmand M, Sadeghi S. Nitrogen-doped Carbon Nanotube/Polymer Nanocomposites Towards Thermoelectric Applications, in: S. Skipidarov and M. Nikitin (Eds.), Thermoelectrics for Power Generation – A Look at Trends in the .Chemically-modified carbon nanotubes (CNTs) exhibit a wide range of physical and chemical properties which makes them an attractive starting material for the preparation of super-strong and highly-conductive fibres and films.
Much information i.