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Nanomaterials and Nanocomposites: Zero- To Three-Dimensional By Visakh, P.M.
2,617.00 EGP

Nanomaterials and Nanocomposites: Zero- To Three-Dimensional By Visakh, P.M.

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Category Type
Metallurgy & Materials Science
ISBN
9783527337804
Author
Visakh, P.M.
Publisher
Wiley-Vch Verlag Gmbh
Description:

  • Nanomaterials are defined as materials in which at least one length dimension is below 100 nanometers. In this size regime, these materials exhibit particular and tunable optical, electrical or mechanical properties that are not present at the macro-scale. This opens up the possibility for a plethora of applications at the interface of materials, chemistry, physics and biology, many of ...

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PRODUCT INFORMATION

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    Specifications

    Category Type
    Metallurgy & Materials Science
    ISBN
    9783527337804
    Item EAN
    2724604894701
    People
    Author
    Visakh, P.M.
    People
    Publisher
    Wiley-Vch Verlag Gmbh
    Category Type
    Metallurgy & Materials Science
    ISBN
    9783527337804
    Item EAN
    2724604894701
    People
    Author
    Visakh, P.M.
    People
    Publisher
    Wiley-Vch Verlag Gmbh
    Technical Information
    Binding
    Paperback
    Languages and countries
    Book Language
    English
    Read more
  •  

    Description:

    • Nanomaterials are defined as materials in which at least one length dimension is below 100 nanometers. In this size regime, these materials exhibit particular and tunable optical, electrical or mechanical properties that are not present at the macro-scale. This opens up the possibility for a
    • Nanomaterials are defined as materials in which at least one length dimension is below 100 nanometers. In this size regime, these materials exhibit particular and tunable optical, electrical or mechanical properties that are not present at the macro-scale. This opens up the possibility for a plethora of applications at the interface of materials, chemistry, physics and biology, many of which have already entered the commercial realm. When nanomaterials are blended with other materials not necessarily in the nanometer regime, the resulting nanocomposites can exhibit dramatically different properties than the bulk material alone, leading to an enhanced performance in terms of, for example, increased thermal and mechanical stability.
 

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