Carbon Nanotubes Graphene And Related Nanostructures Volume 1407


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Carbon Nanotubes, Graphene and Related Nanostructures: Volume 1407


Carbon Nanotubes, Graphene and Related Nanostructures: Volume 1407

Author: Yoke Khin Yap

language: en

Publisher: Materials Research Society

Release Date: 2012-07-09


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Carbon nanotubes, graphene, and related nanostructures have attracted tremendous attentions for their unique structures and intriguing properties. These nanomaterials have been widely investigated, from theory, synthesis and characterization to applications in electronic devices, electron field emission displays, energy generation and storage, and biological and chemical sensors, etc. In addition, non-carbon nanostructures such as nanotubes and nanosheets of boron nitride (BN), boron-carbon nitride (BCN), have gained increasing interest. To facilitate scientific interaction among students and researchers on the latest advancement in this area, Symposium AA, "Carbon Nanotubes, Graphene and Related Nanostructures," was organized and held at the 2011 MRS Fall Meeting in Boston, Massachusetts. This was the largest symposium in the meeting and it emphasized all research aspects of carbon and non-carbon nanotubes and related nanostructures. This proceedings volume consists of peer-reviewed papers presented in the symposium, including invited and contributed presentations.

Properties and Processes at the Nanoscale - Nanomechanics of Material Behavior: Volume 1424


Properties and Processes at the Nanoscale - Nanomechanics of Material Behavior: Volume 1424

Author: Peter Anderson

language: en

Publisher:

Release Date: 2012-07-09


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Symposium SS, "Properties and Processes at the Nanoscale-Nanomechanics of Material Behavior," was held November 28-December 2 at the 2011 MRS Fall Meeting in Boston, Massachusetts. For two decades, the MRS meetings have had a significant presence in hosting symposia focused on nanomechanical behavior of materials. This symposium continued this strong tradition by focusing on both methods of testing and the resulting unique properties in small volumes of materials. Two main thrusts are evident from the field at this time: the use of small scale tests to examine a locally small structure or defect (i.e., something you cannot accomplish with a macroscopic test) and the use of nanomechanics to determine nm-scale mechanisms that control macroscopic mechanical behavior. This selection of papers from the symposium highlight the breadth of work presented at the symposium.

Graphene Science Handbook, Six-Volume Set


Graphene Science Handbook, Six-Volume Set

Author: Mahmood Aliofkhazraei

language: en

Publisher: CRC Press

Release Date: 2016-04-26


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Graphene is the strongest material ever studied and can be an efficient substitute for silicon. This six-volume handbook focuses on fabrication methods, nanostructure and atomic arrangement, electrical and optical properties, mechanical and chemical properties, size-dependent properties, and applications and industrialization. There is no other major reference work of this scope on the topic of graphene, which is one of the most researched materials of the twenty-first century. The set includes contributions from top researchers in the field and a foreword written by two Nobel laureates in physics.