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Smith - Scienza E Tecnologia Dei Materiali [Pdf - ITA] tanzjane



 


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Sep. 13, 2010 - rs-eng- Materials.pdf - RIS - Trinity College Dublin, Dublin, Ireland It is a very interesting PDF. Here are the structure and potential of A nanomaterials as new optical, catalytic, magnetic and biomedical devices. Dec. 10, 2006 - informatica.it - Scientific references on A nanomaterials and related aspects "The understanding of the role of the individual parts in nanostructures is essential for their use in the construction of new electronic and optical devices. The properties of A nanostructures are determined by their structure and shape, but also by the environment in which they are found. Quantum-size effects, in fact, have a large influence on the behavior of nanostructures, even on their macroscopic properties. Nanostructures can form crystalline, amorphous or polycrystalline phases. A and B nanostructures have unusual physical and chemical properties, which can be of interest for the development of new devices and tools. A nanostructure is a material that has a nanometric size, between 1 and 100 nm. The size of the "atoms" in a nanostructure is much smaller than the size of the atoms of the bulk material, which means that the molecules can be placed closer to one another. Each atom in the nanostructure can interact with the surrounding electrons. Quantum-size effects and surface effects are responsible for several interesting phenomena of the material, for example, the photoelectric effect. Quantum-size effects make the electric charge tend to accumulate on the surface of the nanostructure, thereby making the charge density on the surface very high. It can be demonstrated that, if the charge density on the surface is sufficiently high, the work function becomes very low. In addition, the nanostructure can carry out a very large surface area. All these properties make A nanostructures particularly interesting from an application point of view. The main applications of A nanostructures are in the field of electronics, since they can act as ultra-high-density capacitors, new types of semiconductor-based components, and can also be used in the construction of new catalysts. A nanostructure could also be a new type of biological, or even optical, device. The potential applications of A nanostructures in the field of optics are the development of optical devices and of systems for the detection and communication

 

 


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Smith - Scienza E Tecnologia Dei Materiali [Pdf - ITA] tanzjane

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