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Features of the Optical Materials Modified with the Effective Nanoobjects: Balk Properties & Interface

Editat de Natalia V Kamanina
en Limba Engleză Paperback – mar 2014
New effective nano-objects such as the fullerenes, carbon nanotubes, shungites, graphenes and quantum dots have been widely used now in the research of many scientific and technical groups. The main reason to use the fullerenes, shungites, and quantum dots is connected to their unique energy levels and the high value of electron affinity energy. The basic features of carbon nanotubes and graphenes are regarded to their high conductivity, strong hardness of their C-C bonds as well as complicated and unique mechanisms of charge carrier moving. These peculiarities of carbon nano-objects will be under consideration in this paper to explain their influence on balk and surface optical materials properties with good new advantages. As the result of this discussion and investigation, new areas of application of the nanostructured optical materials and elements can be shown in the optoelectronics and laser optics, medicine, telecommunications, display, microscopy technique, etc. Moreover, the nanostructured materials can be used for example, for development of transparent UV and IR window, for gas storage and solar energy accumulation, as well as in airspace and atomic industry.
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Specificații

ISBN-13: 9781629480336
ISBN-10: 1629480339
Pagini: 75
Ilustrații: illustrations
Dimensiuni: 155 x 230 x 9 mm
Greutate: 0.2 kg
Editura: Nova Science Publishers Inc
Colecția Nova Science Publishers, Inc (US)
Locul publicării:United States

Cuprins

Features of the Optical Materials Modified with the Effective Nanoobjects: Bulk Properties & Interface; Organic Conjugated Materials with Fullerenes, Some Possible Mechanisms to Attenuate the Laser Beam in the Visible & Near IR Spectral Range; Laser-Induced Change of the Refractive Index of the Organics Materials Modified with Carbon Nanoparticles, Especially with the Fullerenes & the Carbon Nanotubes; Nematic Liquid Crystals & their Homeotropic Alignment Using Carbon Nanotubes; Poly(Vinyl Alcohol) Thin Film Polarization Elements & their Nanostructurization Via Oriented Carbon Nanotubes Deposition; Spectral & Mechanical Properties of the Inorganic Materials via CNTS Application; Conclusion; Index.