Raman Spectroscopy, Fullerenes and Nanotechnology

Raman Spectroscopy, Fullerenes and Nanotechnology

Author: Maher S. Amer

Publisher: Royal Society of Chemistry

Published: 2010

Total Pages: 303

ISBN-13: 1847552404

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This unique book is the first treatment of nanotechnology as the science controlled by the behaviour of thermodynamic small systems. It provides comprehensive discussions on fullerenes as building blocks, Raman spectroscopy as a powerful diagnostic tool, and nanotechnology as the technology bridging the gap between human-made and biological materials systems. Aimed at graduate students, scientists, researchers, and educators interested in academia, government and industry, the text is divided into four chapters. The first covers the potential of nanotechnology to develop a better, deeper understanding of the physical and chemical phenomena observed in natural systems. It also contains a section introducing nanotechnology to the public in simple, non-scientific terms. The second chapter is devoted to Raman spectroscopy and could in itself serve as a basis for a short course on its applications in materials science. The third section covers fullerenes and presents their history and development as well as discussing the structure and production of zero-dimensional, one-dimensional, and two-dimensional fullerenes. The fourth and final chapter serves as a correlation discussion and over view. It emphasizes the unique nano-phenomena exhibited by the fullerene systems as carbon based nanostructured systems. This chapter, and therefore the book, concludes with a discussion on the potential of nano-science and technology to shape the future of human society.


Raman Spectroscopy, Fullerenes and Nanotechnology

Raman Spectroscopy, Fullerenes and Nanotechnology

Author: Maher S Amer

Publisher: Royal Society of Chemistry

Published: 2010-03-09

Total Pages: 303

ISBN-13: 1849731136

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This unique book is the first treatment of nanotechnology as the science controlled by the behaviour of thermodynamic small systems. It provides comprehensive discussions on fullerenes as building blocks, Raman spectroscopy as a powerful diagnostic tool, and nanotechnology as the technology bridging the gap between human-made and biological materials systems. Aimed at graduate students, scientists, researchers, and educators interested in academia, government and industry, the text is divided into four chapters. The first covers the potential of nanotechnology to develop a better, deeper understanding of the physical and chemical phenomena observed in natural systems. It also contains a section introducing nanotechnology to the public in simple, non-scientific terms. The second chapter is devoted to Raman spectroscopy and could in itself serve as a basis for a short course on its applications in materials science. The third section covers fullerenes and presents their history and development as well as discussing the structure and production of zero-dimensional, one-dimensional, and two-dimensional fullerenes. The fourth and final chapter serves as a correlation discussion and over view. It emphasizes the unique nano-phenomena exhibited by the fullerene systems as carbon based nanostructured systems. This chapter, and therefore the book, concludes with a discussion on the potential of nano-science and technology to shape the future of human society.


Raman Spectroscopy in Graphene Related Systems

Raman Spectroscopy in Graphene Related Systems

Author: Ado Jorio

Publisher: John Wiley & Sons

Published: 2011-08-24

Total Pages: 319

ISBN-13: 3527643907

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Raman spectroscopy is the inelastic scattering of light by matter. Being highly sensitive to the physical and chemical properties of materials, as well as to environmental effects that change these properties, Raman spectroscopy is now evolving into one of the most important tools for nanoscience and nanotechnology. In contrast to usual microscopyrelated techniques, the advantages of using light for nanoscience relate to both experimental and fundamental aspects.


Carbon Nanotube-Polymer Composites

Carbon Nanotube-Polymer Composites

Author: Dimitrios Tasis

Publisher: Royal Society of Chemistry

Published: 2015-11-09

Total Pages: 293

ISBN-13: 1782625828

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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. This volume brings together some of the leading researchers in the field from across the globe to present the potential these materials have, not only in developing and characterising novel materials but also the devices which can be fabricated from them. Topics featured in the book include Raman characterisation, industrial polymer materials, actuators and sensors and polymer reinforcement, with chapters prepared by highly-cited authors from across the globe. A valuable handbook for any academic or industrial laboratory, this book will appeal to newcomers to the field and established researchers alike.


Manipulation of Nanoscale Materials

Manipulation of Nanoscale Materials

Author: Katsuhiko Ariga

Publisher: Royal Society of Chemistry

Published: 2012

Total Pages: 488

ISBN-13: 1849734151

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Techniques and strategies for the production of nanomaterials and nanostructures have developed to an advanced level. With contributions from across the globe, this resource presents a broad spectrum of nanomaterials and their applications.


Semiconductor Quantum Dots

Semiconductor Quantum Dots

Author: Mark Green

Publisher: Royal Society of Chemistry

Published: 2014-07-01

Total Pages: 295

ISBN-13: 1782628355

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Quantum dots are nano-sized particles of semiconducting material, typically chalcogenides or phosphides of metals found across groups II to VI of the periodic table. Their small size causes them to exhibit unique optical and electrical properties which are now finding applications in electronics, optics and in the biological sciences. Synthesis of these materials began in the late 1980’s and this book gives a thorough background to the topic, referencing these early discoveries. Any rapidly-expanding field will contain vast amounts of publications, and this book presents a complete overview of the field, bringing together the most relevant and seminal aspects literature in an informed and succinct manner. The author has been an active participant in the field since its infancy in the mid 1990’s, and presents a unique handbook to the synthesis and application of this unique class of materials. Drawing on both his own experience and referencing the primary literature, Mark Green has prepared. Postgraduates and experienced researchers will benefit from the comprehensive nature of the book, as will manufacturers of quantum dots and those wishing to apply them.


Nanoporous Gold

Nanoporous Gold

Author: Arne Wittstock

Publisher: Royal Society of Chemistry

Published: 2012

Total Pages: 265

ISBN-13: 1849733740

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The book provides a broad, multidisciplinary platform to learn more about the properties of nanoporous gold from an interdisciplinary perspective from an overview of state-of-the-art applications and techniques to the latest research progress.


Nanofluidics (Second Edition)

Nanofluidics (Second Edition)

Author: Joshua Edel

Publisher: Royal Society of Chemistry

Published: 2016-11-18

Total Pages: 326

ISBN-13: 1849734046

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The Nanoscience and Nanotechnology Series provides a comprehensive resource of books covering key topics such as the synthesis, characterisation, performance and properties of nanostructured materials and technologies and their applications.


Towards Efficient Designing of Safe Nanomaterials

Towards Efficient Designing of Safe Nanomaterials

Author: Tomasz Puzyn

Publisher: Royal Society of Chemistry

Published: 2012

Total Pages: 379

ISBN-13: 1849734534

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This book is the first to provide a comprehensive review of recent progress and challenges in the risk assessment of nanomaterials by empirical and computational techniques.