Book Description
Nanoscale science and technology is a young, promising field that encompasses a wide range of disciplines including physics, chemistry, biology, electrical engineering, chemical engineering, and materials science. With rapid advances in areas such as molecular electronics, synthetic biomolecular motors, DNA-based self-assembly, and manipulation of individual atoms, nanotechnology has captured the attention and imagination of researchers and the general public. Introduction to Nanoscale Science and Technology provides a broad and thorough introduction that is aimed specifically at undergraduate seniors and early graduate students in all of the disciplines enumerated above. It will also be of value to academic, industrial, and government researchers interested in a primer in the field. The book consists of twenty-three chapters arranged in seven sections. All chapters have been written by experts from each respective field. Exercises and general references are provided at the end of each chapter to encourage students to expand on the topics discussed in the book. A CD-ROM containing color copies of all figures accompanies the book, allowing rapid preparation of lecture materials by faculty.
Customer Reviews:
A must have!.......2005-01-18
Books like this are difficult to find. Every chapter is very well written, easy to follow and with lots of extra reading suggestions. Finally, a complete, well-organized reference of the field. It definitely belongs to the bookshelves of people seriously interested in learning what nanoscience is all about.
Book Description
"... [A] gem in the scientific literature".
Michael W. Pitcher,
Science, 21 July 2006
International interest in nanoscience research has flourished in recent years, as it becomes an integral part in the development of future technologies. The diverse, interdisciplinary nature of nanoscience means effective communication between disciplines is pivotal in the successful utilization of the science.
Nanochemistry: A Chemical Approach to Nanomaterials is the first textbook for teaching nanochemistry and adopts an interdisciplinary and comprehensive approach to the subject. It presents a basic chemical strategy for making nanomaterials and describes some of the principles of materials self-assembly over 'all' scales. It demonstrates how nanometre and micrometre scale building blocks (with a wide range of shapes, compositions and surface functionalities) can be coerced through chemistry to organize spontaneously into unprecedented structures, which can serve as tailored functional materials. Suggestions of new ways to tackle research problems and speculations on how to think about assembling the future of nanotechnology are given.
Primarily designed for teaching, this book will appeal to graduate and advanced undergraduate students. It is well illustrated with graphical representations of the structure and form of nanomaterials and contains problem sets as well as other pedagogical features such as further reading, case studies and a comprehensive bibliography.
Geoffrey Ozin and André Arsenault are both based at the University of Toronto in Canada. Ozin has been the recipient of numerous awards and has made a huge contribution to teaching over the years, while his research work is widely published and recognised throughout the world.
Philip Ball, renowned science writer and 2005 winner of the Aventis Prize for Science, commented: "A text that covers all the basic concepts of nanoscale chemistry and materials science, and sets them in their historical context, has been long overdue. But here it is — not just a comprehensive guide to the field, but a recipe book for the future. Nanoengineers, start here!"
Customer Reviews:
Everything you always wanted to know about the chemistry of nanomaterials.......2006-01-22
Not for the faint of chemistry, "Nanochemistry: A Chemical Approach to Nanomaterials" by Geoffrey Ozin and Andre Arsenault explains the creation and function of materials with at least one dimension between one and 1000 nanometers. If you seek a light narrative about what nanotechnology will bring our world, Nanochemistry is not your book (and it's too heavy to read in bed anyway). If, on the other hand, you seek the scientific details of how nanomaterials really work, this is your textbook or reference.
Ironically, Nanochemistry opens with Einstein's famous quote, "Imagination is more important than knowledge." The book, however, is a testimony to imagination being built upon knowledge, as telegraphed by this early sentence: "The genesis of a creative idea, first and foremost, requires a knowledge bank of all classes of solids and how to make them." The table of contents covers the waterfront of material building blocks and self-assembly, stopping short of molecular manufacturing and molecular machine systems:
1. Nanochemistry basics
2. Chemical patterning and lithography
3. Layer-by-layer self-assembly
4. Nanocontact printing and writing - stamps and tips
5. Nanorod, nanotube, nanowire self-assembly
6. Nanocluster self-assembly
7. Microspheres - colors from the beaker
8. Microporous and mesoporous materials from soft building blocks
9. Self-assembling block copolymers
10. Biomaterials and bioinspiration
11. Self-assembly of large building blocks
12. Nano and beyond
13. Nanochemistry nanolabs
The introductory chapter is playful in setting the stage, using a sketch of a radiolarian and a photograph of Gaudi's Sagrada Familia church in Barcelona to illustrate organic patterns. But this is a serious book designed for the serious student: Each chapter concludes with a list of questions ("Nanofood for Thought") that demand creative synthesis, not simply finding the answer in the chapter. In spite of the breadth of material, Nanochemistry covers it in detail, with ample illustrations and footnotes (averaging more than 100 footnotes per chapter). The authors' claim that "the book should be useful to a broad readership" is a bit optimistic, given the familiarity with chemistry it demands, but Nanochemistry will certainly be quite useful to those who wish to understand how to synthesize nanoscale materials and structures.
I am the Director of Education for the Foresight Nanotech Institute and the author of Technology Challenged: Understanding Our Creations & Choosing Our Future.
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Nanoparticles: Building Blocks for Nanotechnology (Nanostructure Science and Technology)
Vincent Rotello
Manufacturer: Springer
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Nanoparticles: From Theory to Application
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Nanochemistry: A Chemical Approach to Nanomaterials
Accessories:
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Crystal Structure Determination
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Ferro- and Antiferroelectricity: Order/Disorder Cersus Displacive (Structure and Bonding)
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Biomineralization I (Topics in Current Chemistry)
ASIN: 0306482878 |
Book Description
The diverse structures and properties of nanoparticles make them useful tools for both fundamental studies and pragmatic applications in a range of disciplines. This volume is intended to explore this diversity. The first section covers on formation of nanoparticles, and assembly of these systems into structured systems. The second section focuses on both the fundamental physical properties of nanoparticles and pragmatic applications of these systems in the areas of device and materials fabrication. The book will approach the subject from a chemical standpoint, in contrast to most books which are oriented towards materials science or physics. It will also appeal to materials scientists and physicists who are becoming aware of the contributions that chemists can make here.
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Synthesis, Properties, and Applications of Oxide Nanomaterials
Manufacturer: Wiley-Interscience
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Binding: Hardcover
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ASIN: 047172405X |
Book Description
Current oxide nanomaterials knowledge to draw from and build on
Synthesis, Properties, and Applications of Oxide Nanomaterials summarizes the existing knowledge in oxide-based materials research. It gives researchers one comprehensive resource that consolidates general theoretical knowledge alongside practical applications. Organized by topic for easy access, this reference:
* Covers the fundamental science, synthesis, characterization, physicochemical properties, and applications of oxide nanomaterials
* Explains the fundamental aspects (quantum-mechanical and thermodynamic) that determine the behavior and growth mode of nanostructured oxides
* Examines synthetic procedures using top-down and bottom-up fabrication technologies involving liquid-solid or gas-solid transformations
* Discusses the sophisticated experimental techniques and state-of-the-art theory used to characterize the structural and electronic properties of nanostructured oxides
* Describes applications such as sorbents, sensors, ceramic materials, electrochemical and photochemical devices, and catalysts for reducing environmental pollution, transforming hydrocarbons, and producing hydrogen
With its combination of theory and real-world applications plus extensive bibliographic references, Synthesis, Properties, and Applications of Oxide Nanomaterials consolidates a wealth of current, complex information in one volume for practicing chemists, physicists, and materials scientists, and for engineers and researchers in government, industry, and academia. It's also an outstanding reference for graduate students in chemistry, chemical engineering, physics, and materials science.
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Nanotechnology in Catalysis 3 (Nanostructure Science and Technology)
Manufacturer: Springer
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ASIN: 0387346872 |
Book Description
This volume continues the tradition formed in Nanotechnology in Catalysis 1 and 2. As with those books, this one is based upon an ACS symposium. Some of the most illustrious names in heterogeneous catalysis are among the contributors.
The book covers:
- Design, synthesis, and control of catalysts at nanoscale
- Understanding of catalytic reaction at nanometer scale
- Characterization of nanomaterials as catalysts
- Nanoparticle metal or metal oxides catalysts
- Nanomaterials as catalyst supports
- New catalytic applications of nanomaterials
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An Introduction to Electrospinning and Nanofibers
Seeram Ramakrishna ,
Kazutoshi Fujihara ,
Wee-eong Teo ,
Teik-cheng Lim , and
Zuwei Ma
Manufacturer: World Scientific Publishing Company
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Binding: Paperback
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Understanding Nanotechnology
ASIN: 9812564543 |
Product Description
The research and development of nanofibers has gained much prominence in recent years due to the heightened awareness of its potential applications in the medical, engineering and defense fields. Among the most successful methods for producing nanofibers is the electrospinning process. In this timely book, the areas of electrospinning and nanofibers are covered for the first time in a single volume. The book can be broadly divided into two parts: the first comprises descriptions of the electrospinning process and modeling to obtain nanofibers while the second describes the characteristics and applications of nanofibers. The material is aimed at both newcomers and experienced researchers in the area.
Customer Reviews:
Neutral about it ............2007-08-30
There are only a few books that discuss these topics and only in one or two chapters. This book brings a fair review of the theory of electrospinning and some of the current state of the technology in one reference. I felt like the work of some research groups was not discussed or even mentioned. A problem that many of these books have and make you question its "sientific neutrality or objectivity (sorry if I mispelled)." Good for a first read into the topic and as a starting point for a literature review.
Now some comments not related to the content. Even someone whose first language is not english (like me), can not ignore the large ammount of typos and grammatical errors. I could not control myself and ended up reading and correcting the errors with a red pen. Some people may be put-off by this. I got the paperback edition which has a fair price (compared to other books that you may pay more and get the same quality). The hardback is not worth it.
Book Description
Nanostructured Materials for Solar Energy Conversion covers a wide variety of materials and device types from inorganic materials to organic materials. This book deals with basic semiconductor physics, modelling of nanostructured solar cell, nanostructure of conventional solar cells such as silicon, CIS and CdTe, dye-sensitized solar cell, organic solar cell, photosynthetic materials, fullerene, extremely thin absorber (ETA) solar cell, quantum structured solar cell, intermediate band solar cell, carbon nanotube, etc. including basic principle and the latest results. There are many books written on conventional p-n junction solar cells, but few books focus on new concepts in this area.
* Focuses on the use of nanostructured materials for solar energy
* Looks at a wide variety of materials and device types
* Covers both organic and inorganic materials
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Molecular Nanomagnets (Mesoscopic Physics and Nanotechnology)
Dante Gatteschi ,
Roberta Sessoli , and
Jacques Villain
Manufacturer: Oxford University Press, USA
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ASIN: 0198567537 |
Book Description
Nanomagnetism is a rapidly expanding area of research which appears to be able to provide novel applications. Magnetic molecules are at the very bottom of the possible size of nanomagnets and they provide a unique opportunity to observe the coexistence of classical and quantum properties. The discovery in the early 90's that a cluster comprising twelve manganese ions shows hysteresis of molecular origin, and later proved evidence of quantum effects, opened a new research area which is still flourishing through the collaboration of chemists and physicists. This book is the first attempt to cover in detail the new area of molecular nanomagnetism, for which no other book is available. In fact research and review articles, and book chapters are the only tools available for newcomers and the experts in the field. It is written by the chemists originators and by a theorist who has been one of the protagonists of the development of the field, and is explicitly addressed to an audience of chemists and physicists, aiming to use a language suitable for the two communities.
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Adsorption and Diffusion in Nanoporous Materials
Rolando M.A. Roque-Malherbe
Manufacturer: CRC
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ASIN: 1420046756 |
Book Description
As nanomaterials get smaller, their properties increasingly diverge from their bulk material counterparts. Written from a materials science perspective, Adsorption and Diffusion in Nanoporous Materials describes the methodology for using single-component gas adsorption and diffusion measurements to characterize nanoporous solids. Concise, yet comprehensive, the book covers both equilibrium adsorption and adsorption kinetics in dynamic systems in a single source. It presents the theoretical and mathematical tools for analyzing microporosity, kinetics, thermodynamics, and transport processes of the adsorbent surface. Then it examines how these measurements elucidate structural and morphological characteristics of the materials. Detailed descriptions of the phenomena include diagrams, essential equations, and fully derived, concrete examples based on the author's own research experiences and insight. The book contains chapters on statistical physics, dynamic adsorption in plug flow bed reactors, and the synthesis and modification of important nanoporous materials. The final chapter covers the principles and applications of adsorption for multicomponent systems in the liquid phase. Connecting recent advances in adsorption characterization with developments in the transport and diffusion of nanoporous materials, this book is ideal for scientists involved in the research, development, and applications of new nanoporous materials.
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Colloids and Colloid Assemblies: Synthesis, Modification, Organization and Utilization of Colloid Particles
Manufacturer: Wiley-VCH
ProductGroup: Book
Binding: Hardcover
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ASIN: 3527306609 |
Book Description
Written by outstanding experts in the colloids field, this book deals with the recent developments in the synthesis, modification, utilization and application of colloids. The types covered range from metal nanoparticles through to inorganic particles and polymer latexes. Strategies for their modification to impart new properties will be outlined and ordered assemblies derived from colloid particles and some applications for colloids are shown.
A multidisciplinary audience spread throughout academia and industry alike will certainly appreciate this first concise collection of knowledge in book form for this topic.
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