Computational Physics Of Carbon Nanotubes


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Computational Physics of Carbon Nanotubes


Computational Physics of Carbon Nanotubes

Author: Hashem Rafii-Tabar

language: en

Publisher: Cambridge University Press

Release Date: 2008


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This book presents the key theories, computational modelling and numerical simulation tools required to understand carbon nanotube physics. Specifically, methods applied to geometry and bonding, mechanical, thermal, transport and storage properties are addressed. This self-contained book will interest researchers across a broad range of disciplines.

Structure and Multiscale Mechanics of Carbon Nanomaterials


Structure and Multiscale Mechanics of Carbon Nanomaterials

Author: Oskar Paris

language: en

Publisher: Springer

Release Date: 2015-11-26


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This book provides a broad overview on the relationship between structure and mechanical properties of carbon nanomaterials from world-leading scientists in the field. The main aim is to get an in-depth understanding of the broad range of mechanical properties of carbon materials based on their unique nanostructure and on defects of several types and at different length scales. Besides experimental work mainly based on the use of (in-situ) Raman and X-ray scattering and on nanoindentation, the book also covers some aspects of multiscale modeling of the mechanics of carbon nanomaterials.

Organized Networks of Carbon Nanotubes


Organized Networks of Carbon Nanotubes

Author: K.R.V. Subramanian

language: en

Publisher: CRC Press

Release Date: 2020-03-17


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In this book, meshes and networks formed out of multiwalled carbon nanotubes are investigated and analyzed, including their use in niche applications such as electro-optic devices, advanced mechanical, thermal and electrical property enhancement, and gene editing. Different properties of multi-walled carbon nanotubes, including random network formation, ordering the meshes and networks by mechanical agitation and application of an external field, using crystallization and cross-linking induced phase separation in homopolymers-CNT composites are discussed with theoretical analysis. The book is aimed at researchers and graduate students in Electrical Engineering; Materials Science and Engineering; Chemical Engineering and Nanotechnology, Electronic circuit design, manufacturing, and characterization.