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Nanomaterials

 
Nanotechnology

List of nanotechnology companies that produces nanomaterials.

See also the cross-references to related topics on the left side.


  • Altairnano
    ... is a recognized industry innovator in the discovery, development and manufacture of ceramic nanomaterials (USA) [e]


  • ApNano Materials, Inc.
    A leading nanotechnology company that is commercializing proprietary technology for nanospheres and nanotubes made from inorganic compounds (USA) [e]


  • Argonide
    NanoCeram® Electropositive nano fiber filter media (USA) [e]


  • DA NanoMaterials L.L.C.
    Developing and manufacturing colloidal silica sols and particles for electronic applications [e]


  • Degussa Advanced Nanomaterials
    Nanostructured materials and their dispersions (D) [e]


  • NanoAnalytics
    Your Partner for Surface Analysis (D) [d, e]


  • NanoBioNet
    Center of Excellence Nanobiotechnology. Saarland - Rheinhessen-Pfalz (D) [d, e]


  • Nanogate
    (D) [d, e]


  • Nanomat
    A leading manufacturer of nanomaterials, powders, and technologies (USA) [e]


  • Nanomaterials Company
    Nanoscience to develop the nanoparticle (USA) [e]


  • NanoMaterials Technology Pte Ltd
    Specialized in the development and commercialization of nanomaterial synthesis for the pharmaceutical, electronic material and chemicals sectors (SG) [e]


  • Nanophase Technologies Corporation
    An industry-leading nanocrystalline materials innovator and manufacturer with an integrated family of nanomaterial technologies (USA) [e]


  • QinetiQ Nanomaterials Ltd
    One of Europe's leading nanotechnology companies, developing both applications and materials solutions for an international client base (UK) [e]


 
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Topic:
Nanotechnology

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 Chemistry Books

 

 

G. Hodes

Electrochemistry of Nanomaterials

Engineering of nanophase materials and devices is of vital interest in electronics, semiconductors and optics, catalysis, ceramics and magnetism. Research associated with nanoparticles has widely spread and diffused into every field of scientific research, forming a trend of nanocrystal engineered materials. Electrochemical methods are widely used for the preparation of nanoparticles and the electrochemical properties of such nanomaterials are most relevant for their applications. This comprehensive reference work will appeal to advanced graduate students and researchers in the field specialized in electrochemistry, materials physics and materials science. Wiley-VCH 2001.

H. Hofmann

Nanostructured Materials

The articles in this book summarize the work presented at the mid-term workshop of the COST (European Cooperation in the Fields of Scientific and Technical Research) action on Nanostructured Materials, which was held in October 2001 in Limerick, Ireland. The collection gives an excellent overview of the state-of-the-art, topical research areas in this field and the progress made by the coordinated research projects. The articles range over the synthesis, physical properties and characterization of nanostructured materials, such as magnetic and ferroelectric nanoparticles, nanoparticles in biological systems, metallic nanoparticles, nanocomposites, particle-reinforced polymers, semiconductor nanoparticles and thin films. Springer-Verlag 2002.

Reich, Thomsen, Maultzsch

Carbon Nanotubes

Carbon nanotubes are exceptionally interesting from a fundamental research point of view. Many concepts of one-dimensional physics have been verified experimentally such as electron and phonon confinement or the one-dimensional singularities in the density of states; other 1D signatures are still under debate, such as Luttinger-liquid behavior. Carbon nanotubes are chemically stable, mechanically very strong, and conduct electricity. For this reason, they open up new perspectives for various applications, such as nano-transistors in circuits, field-emission displays, artificial muscles, or added reinforcements in alloys. This text is an introduction to the physical concepts needed for investigating carbon nanotubes and other one-dimensional solid-state systems. Written for a wide scientific readership, each chapter consists of an instructive approach to the topic and sustainable ideas for solutions. The former is generally comprehensible for physicists and chemists, while the latter enable the reader to work towards the state of the art in that area. The book gives for the first time a combined theoretical and experimental description of topics like luminescence of carbon nanotubes, Raman scattering, or transport measurements. The theoretical concepts discussed range from the tight-binding approximation, which can be followed by pencil and paper, to first-principles simulations. Wiley-VCH 2004


 

Internetchemistry © 2007 A. J. - last update: 12.09.2007