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The Mathematics and Topology of Fullerenes presents a comprehensive overview of scientific and technical innovations in theoretical and experimental studies. topological indices of fullerenes; local combinatorial characterization of fullerenes; computation of selected topological indices of C60 and C80 Fullerenes via the Gap Program;
This book provides an interesting snapshot of new research within the fields of flexible and soft devices which use porous carbon-based materials. The increase in demand for soft and flexible electronics, electrochemical energy storage/conversion systems, piezoresistive pressure sensors has promoted the development of new strategies for the synthesis and integration of nanoporous carbon (NPC) into flexible and soft polymers and inorganic textures. The structural properties of such NPC materials combined with their mechanical, conductive and catalytic properties, show promising results for the technology they are designed for, which can be useful solutions in many other disciplines. An in-depth discussion of the use of NPC materials in different energy devices is provided in every chapter, while at the same time the knowledge of the reader on the various applications where these materials can be used will be broadened. This book sheds new light on nanoporous carbon-based materials and will be of great interest to graduate students and professionals working in this field.
Further topics covered include spontaneous symmetry breaking in graphene, polyhedral carbon structures, nanotube junction energetics, and cyclic polyines as relatives of nanotubes and fullerenes.
This volume presents new methodologies and rationalizes existing methods that are used in the design of multi-shell polyhedral clusters. The author goes on to show how the recently established methods are used for building complex multi-shell nanostructures and how this completes the existing information in the field.
Further topics covered include spontaneous symmetry breaking in graphene, polyhedral carbon structures, nanotube junction energetics, and cyclic polyines as relatives of nanotubes and fullerenes.
The Mathematics and Topology of Fullerenes presents a comprehensive overview of scientific and technical innovations in theoretical and experimental studies. topological indices of fullerenes; local combinatorial characterization of fullerenes; computation of selected topological indices of C60 and C80 Fullerenes via the Gap Program;
Synthesizing the current research on carbon materials, this volume explores how varying methods can be combined while presenting how new carbon structures are predicted. The text serves as an up-to-date survey on the theoretical and computational research on novel carbon systems.
Fulleranes are a special class of carbon molecules derived from fullerenes whose double bonds are partially or at least theoretically fully saturated by hydrogen.
"Carbon Bonding and Structures: Advances in Physics and Chemistry" features detailed reviews which describe the latest advances in the modeling and characterization of fundamental carbon based materials and recently designed carbon composites.
"Carbon Bonding and Structures: Advances in Physics and Chemistry" features detailed reviews which describe the latest advances in the modeling and characterization of fundamental carbon based materials and recently designed carbon composites.
Over the past twenty years, the field of carbon structures has been invigorated by the discovery of fullerenes and carbon nanotubes.
Fulleranes are a special class of carbon molecules derived from fullerenes whose double bonds are partially or at least theoretically fully saturated by hydrogen.
This unique book covers studies into the applications of fullerenes and carbon nanotubes. It features the recent developments which solely involve the pharmacological and biomaterials applications as well as the chemical properties of fullerenes.
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Synthesizing the current research on carbon materials, this volume explores how varying methods can be combined while presenting how new carbon structures are predicted. The text serves as an up-to-date survey on the theoretical and computational research on novel carbon systems.
Over the past twenty years, the field of carbon structures has been invigorated by the discovery of fullerenes and carbon nanotubes.
This volume explains how topological mechanisms operate at the nanoscale. It presents electronic and magnetic features of graphenic nanostructures as an instrumental step toward spintronics applications.
Exotic Properties of Carbon Nanomatter
This volume explains how topological mechanisms operate at the nanoscale. It presents electronic and magnetic features of graphenic nanostructures as an instrumental step toward spintronics applications.
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