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Optics of nanomaterials /
~
Gavrilenko, V. I.
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Optics of nanomaterials /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Optics of nanomaterials // Vladimir I. Gavrilenko.
作者:
Gavrilenko, V. I.
出版者:
Singapore :Pan Stanford Pub., : c2011.,
面頁冊數:
xxxv, 329 p. :ill. (some col.) ;26 cm.
標題:
Nanostructured materials - Optical properties. -
ISBN:
9814241091 (hbk.)
Optics of nanomaterials /
Gavrilenko, V. I.
Optics of nanomaterials /
Vladimir I. Gavrilenko. - Singapore :Pan Stanford Pub.,c2011. - xxxv, 329 p. :ill. (some col.) ;26 cm.
Includes bibliographical references (p. 301-326) and index.
Nanomaterials are generally categorized into three main groups: fundamental building blocks, dispersions or composites of building blocks in randomly ordered matrices, and spatially resolved, ordered nanostructures. Today, nanomaterials that offer some unique optical properties may find application as pure materials or may be integrated into larger structures. The book presents examples of pure materials that include polymer clay nanocomposites for structural applications and quantum dots for applications in optical imaging. There are also examples of integrated structures which include nanoparticle drug delivery systems, batteries, sensors, and fuel cells.
ISBN: 9814241091 (hbk.)Subjects--Topical Terms:
576101
Nanostructured materials
--Optical properties.
LC Class. No.: TA418.9.N35 / G38 2011
Optics of nanomaterials /
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Vladimir I. Gavrilenko.
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Includes bibliographical references (p. 301-326) and index.
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Nanomaterials are generally categorized into three main groups: fundamental building blocks, dispersions or composites of building blocks in randomly ordered matrices, and spatially resolved, ordered nanostructures. Today, nanomaterials that offer some unique optical properties may find application as pure materials or may be integrated into larger structures. The book presents examples of pure materials that include polymer clay nanocomposites for structural applications and quantum dots for applications in optical imaging. There are also examples of integrated structures which include nanoparticle drug delivery systems, batteries, sensors, and fuel cells.
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While the chemistry, physics, and optical properties of simple atoms and molecules are quite well understood, this book demonstrates that there is much to be learned about the optics of nanomaterials. Through comparative analysis of the size-dependent optical response from nanomaterials, it shows that although strides have been made in computational chemistry and physics, bridging length scales from nano to macro remains a major challenge. Organic, molecular, polymer, and biological systems are shown to be potentially useful models for assembly. Our progress in understanding the optical properties of biological nanomaterials is an important driving force for a variety of applications. --Book Jacket.
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