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Functional organic and hybrid nanostructured materials : fabrication, properties, and applications / edited by Quan Li.

Contributor(s): Li, Quan [editor.].
Material type: materialTypeLabelBookPublisher: Weinheim, Germany : Wiley-VCH, 2018Description: 1 online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783527807352; 3527807357; 9783527807369; 3527807365; 3527342540; 9783527342549.Subject(s): Nanostructured materials | TECHNOLOGY & ENGINEERING -- Engineering (General) | TECHNOLOGY & ENGINEERING -- Reference | Nanostructured materialsGenre/Form: Electronic books.DDC classification: 620.1/15 Online resources: Wiley Online Library
Contents:
Controllable Self-Assembly of One-Dimensional Nanocrystals / Shaoyi Zhang, Yang Yang, Zhihong Nie -- Self-Assembled Graphene Nanostructures and Their Applications / Dingshan Yu, Zhongke Yuan, Xiaofen Xiao, Quan Li -- Photochromic Organic and Hybrid Self-Organized Nanostructured Materials: From Design to Applications / Ling Wang, Quan Li -- Photoresponsive Host-Guest Nanostructured Supramolecular Systems / Da-Hui Qu, Wen-Zhi Wang, He Tian -- [pi]-Electronic Ion-Pairing Assemblies Providing Nanostructured Materials / Yohei Haketa, Hiromitsu Maeda -- Stimuli-Responsive Nanostructured Surfaces for Biomedical Applications / Bárbara Santos Gomes, Paula M Mendes -- Stimuli-Directed Self-Organized One-Dimensional Organic Semiconducting Nanostructures for Optoelectronic Applications / AS Achalkumar, Manoj Mathews, Quan Li -- Stimuli-Directed Helical Axis Switching in Chiral Liquid Crystal Nanostructures / Rafael S Zola, Quan Li -- Electrically Driven Self-Organized Chiral Liquid-Crystalline Nanostructures: Organic Molecular Photonic Crystal with Tunable Bandgap / Suman K Manna, Thomas F George, Guoqiang Li -- Nanostructured Organic-Inorganic Hybrid Membranes for High-Temperature Proton Exchange Membrane Fuel Cells / Jin Zhang, San Ping Jiang -- Two-Dimensional Organic and Hybrid Porous Frameworks as Novel Electronic Material Systems: Electronic Properties and Advanced Energy Conversion Functions / Ken Sakaushi -- Organic/Inorganic Hybrid Nanostructured Materials for Thermoelectric Energy Conversion / Yucheng Lan, Xiaoming Wang, Chundong Wang, Mona Zebarjadi -- Hybrid Organic-Nitride Semiconductor Nanostructures for Biosensor Applications / Paul Bertani, Wu Lu -- Polymer-Nanomaterial Composites for Optoacoustic Conversion / Taehwa Lee, Hyoung Won Baac, Jong G Ok, L Jay Guo -- Functional Nanostructured Conjugated Polymers / Satoshi Matsushita, Benedict San Jose, Kazuo Akagi -- Nanostructured Self-Organized Heliconical Nematic Liquid Crystals: Twist-Bend Nematic Phase / Hari K Bisoyi, Quan Li.
Summary: The first book to explore the potential of tunable functionalities in organic and hybrid nanostructured materials in a unified manner. The highly experienced editor and a team of leading experts review the promising and enabling aspects of this exciting materials class, covering the design, synthesis and/or fabrication, properties and applications. The broad topical scope includes organic polymers, liquid crystals, gels, stimuli-responsive surfaces, hybrid membranes, metallic, semiconducting and carbon nanomaterials, thermoelectric materials, metal-organic frameworks, luminescent and photochromic materials, and chiral and self-healing materials.
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Controllable Self-Assembly of One-Dimensional Nanocrystals / Shaoyi Zhang, Yang Yang, Zhihong Nie -- Self-Assembled Graphene Nanostructures and Their Applications / Dingshan Yu, Zhongke Yuan, Xiaofen Xiao, Quan Li -- Photochromic Organic and Hybrid Self-Organized Nanostructured Materials: From Design to Applications / Ling Wang, Quan Li -- Photoresponsive Host-Guest Nanostructured Supramolecular Systems / Da-Hui Qu, Wen-Zhi Wang, He Tian -- [pi]-Electronic Ion-Pairing Assemblies Providing Nanostructured Materials / Yohei Haketa, Hiromitsu Maeda -- Stimuli-Responsive Nanostructured Surfaces for Biomedical Applications / Bárbara Santos Gomes, Paula M Mendes -- Stimuli-Directed Self-Organized One-Dimensional Organic Semiconducting Nanostructures for Optoelectronic Applications / AS Achalkumar, Manoj Mathews, Quan Li -- Stimuli-Directed Helical Axis Switching in Chiral Liquid Crystal Nanostructures / Rafael S Zola, Quan Li -- Electrically Driven Self-Organized Chiral Liquid-Crystalline Nanostructures: Organic Molecular Photonic Crystal with Tunable Bandgap / Suman K Manna, Thomas F George, Guoqiang Li -- Nanostructured Organic-Inorganic Hybrid Membranes for High-Temperature Proton Exchange Membrane Fuel Cells / Jin Zhang, San Ping Jiang -- Two-Dimensional Organic and Hybrid Porous Frameworks as Novel Electronic Material Systems: Electronic Properties and Advanced Energy Conversion Functions / Ken Sakaushi -- Organic/Inorganic Hybrid Nanostructured Materials for Thermoelectric Energy Conversion / Yucheng Lan, Xiaoming Wang, Chundong Wang, Mona Zebarjadi -- Hybrid Organic-Nitride Semiconductor Nanostructures for Biosensor Applications / Paul Bertani, Wu Lu -- Polymer-Nanomaterial Composites for Optoacoustic Conversion / Taehwa Lee, Hyoung Won Baac, Jong G Ok, L Jay Guo -- Functional Nanostructured Conjugated Polymers / Satoshi Matsushita, Benedict San Jose, Kazuo Akagi -- Nanostructured Self-Organized Heliconical Nematic Liquid Crystals: Twist-Bend Nematic Phase / Hari K Bisoyi, Quan Li.

Includes bibliographical references and index.

Online resource; title from PDF title page (John Wiley, viewed February 6, 2018).

The first book to explore the potential of tunable functionalities in organic and hybrid nanostructured materials in a unified manner. The highly experienced editor and a team of leading experts review the promising and enabling aspects of this exciting materials class, covering the design, synthesis and/or fabrication, properties and applications. The broad topical scope includes organic polymers, liquid crystals, gels, stimuli-responsive surfaces, hybrid membranes, metallic, semiconducting and carbon nanomaterials, thermoelectric materials, metal-organic frameworks, luminescent and photochromic materials, and chiral and self-healing materials.

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