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Nanomaterials and Nanoarchitectures electronic resource A Complex Review of Current Hot Topics and their Applications / edited by M. Bardosova, T. Wagner.

Contributor(s): Bardosova, M [editor.] | Wagner, T [editor.] | SpringerLink (Online service)Material type: TextTextSeries: NATO Science for Peace and Security Series C: Environmental SecurityPublication details: Dordrecht : Springer Netherlands : Imprint: Springer, 2015Edition: 1st ed. 2015Description: XIV, 343 p. 230 illus., 132 illus. in color. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9789401799218Subject(s): chemistry | Nanochemistry | Surfaces (Physics) | Interfaces (Physical sciences) | Thin films | Optics | Optoelectronics | Plasmons (Physics) | System safety | Nanotechnology | Chemistry | Nanochemistry | Optics, Optoelectronics, Plasmonics and Optical Devices | Nanotechnology | Security Science and Technology | Surface and Interface Science, Thin FilmsDDC classification: 541.2 LOC classification: QD478Online resources: Click here to access online
Contents:
Colloidal photonic crystal films: fabrication and tunable structural color and applications -- Plasmonics and Ultrasensitive Detection -- Functional Nanomaterials Prepared by Nanoarchitectonics-Based Supramolecular Assembly -- A brief history of nanoscience and foresight in nanotechnology -- Halloysite clay nanotube composites with sustained release of chemicals -- Colloidal Photonic Crystal Architectures for Advanced Light Management Applications -- Crystalline and Amorphous Chalcogenides, High-Tech Materials with Structural Disorder and Many Important Applications -- Plasmonic gas and chemical sensing -- Planar Hybrid Plasmonic-Photonic Crystals -- Fundamentals and Applications of Organised Molecular Films.
In: Springer eBooksSummary: The current work consists of nine contributions describing recent progress in the interdisciplinary of Nanoscience, which involves physics, chemistry, engineering, biology and medicine and one essay outlining some important historical and socioeconomic factors pertaining to recent developments in nanoscale science and technology. All 10 chapters have been written by eminent experts in their respective fields. The authors employ the terms ‘nanomaterials’ as building blocks of a range of materials, ‘nanoarchitecture’ represents the design and ‘nanotechnology’ the means to produce a particular device or functionality. Two of the  chapters are devoted to novel materials and two others focus on analyzing techniques, which can be used to enable molecular control of the film architecture. Additionally, the reader will find material devoted to photonic and hybrid plasmonic-photonic crystals as well as sections which address their applications, such as the use of plasmonic particles and nanostructures for new sensing concepts and ultrasensitive detection techniques. This work will be of interest to graduate students, researchers and practitioners alike.
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Colloidal photonic crystal films: fabrication and tunable structural color and applications -- Plasmonics and Ultrasensitive Detection -- Functional Nanomaterials Prepared by Nanoarchitectonics-Based Supramolecular Assembly -- A brief history of nanoscience and foresight in nanotechnology -- Halloysite clay nanotube composites with sustained release of chemicals -- Colloidal Photonic Crystal Architectures for Advanced Light Management Applications -- Crystalline and Amorphous Chalcogenides, High-Tech Materials with Structural Disorder and Many Important Applications -- Plasmonic gas and chemical sensing -- Planar Hybrid Plasmonic-Photonic Crystals -- Fundamentals and Applications of Organised Molecular Films.

The current work consists of nine contributions describing recent progress in the interdisciplinary of Nanoscience, which involves physics, chemistry, engineering, biology and medicine and one essay outlining some important historical and socioeconomic factors pertaining to recent developments in nanoscale science and technology. All 10 chapters have been written by eminent experts in their respective fields. The authors employ the terms ‘nanomaterials’ as building blocks of a range of materials, ‘nanoarchitecture’ represents the design and ‘nanotechnology’ the means to produce a particular device or functionality. Two of the  chapters are devoted to novel materials and two others focus on analyzing techniques, which can be used to enable molecular control of the film architecture. Additionally, the reader will find material devoted to photonic and hybrid plasmonic-photonic crystals as well as sections which address their applications, such as the use of plasmonic particles and nanostructures for new sensing concepts and ultrasensitive detection techniques. This work will be of interest to graduate students, researchers and practitioners alike.

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