Nanomaterials, Polymers and Devices
Materials Functionalization and Device Fabrication
(Sprache: Englisch)
Offering an introduction to the topic and the nature of shape memory effects and superelasticity, Shape Memory Polymers provides an in depth look at the properties, mechanics, applications, and characterization of SMPs and thermoplastic elastomers. Author E.S.W.
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Offering an introduction to the topic and the nature of shape memory effects and superelasticity, Shape Memory Polymers provides an in depth look at the properties, mechanics, applications, and characterization of SMPs and thermoplastic elastomers. Author E.S.W.
Klappentext zu „Nanomaterials, Polymers and Devices “
Providing an eclectic snapshot of the current state of the art and future implications of the field, Nanomaterials, Polymers, and Devices: Materials Functionalization and Device Fabrication presents topics grouped into three categorical focuses:* The synthesis, mechanism and functionalization of nanomaterials, such as carbon nanotubes, graphene, silica, and quantum dots
* Various functional devices which properties and structures are tailored with emphasis on nanofabrication. Among discussed are light emitting diodes, nanophotonic, nano-optical, and photovoltaic devices
* Nanoelectronic devices, which include semiconductor, nanotube and nanowire-based electronics, single-walled carbon-nanotube based nanoelectronics, as well as thin-film transistors
Provides an interdisciplinary approach to the fabrication, assembly and structural characterization of nanomaterials
From metals and semiconductors to organic compounds and/or polymers, structures and properties are continuously being redefined, as building blocks in nanomaterials are leading to a plethora of novel devices and functions. For years, nanotechnology has paved the way for the marriage of many broad science disciplines, leading to life-altering innovations in medicine, electronics, biomaterials energy production, and consumer products. The field still remains broad and young, with debates ongoing about its overall impact.
Providing an eclectic snapshot of the current state of the art and future implications of the field, Nanomaterials, Polymers, and Devices: Materials Functionalization and Device Fabrication presents topics grouped into three categorical focuses:
* The synthesis, mechanism and functionalization of nanomaterials, such as carbon nanotubes, graphene, silica, and quantum dots
* Various functional devices which properties and structures are tailored with emphasis on nanofabrication. Among discussed are light emitting diodes, nanophotonic, nano-optical, and photovoltaic devices
* Nanoelectronic devices, which include semiconductor, nanotube and nanowire-based electronics, single-walled carbon-nanotube based nanoelectronics, as well as thin-film transistors
Bringing the disciplines of physics, chemistry and materials engineering closer together, this well-researched monograph exudes the versatility of nanotechnology in materials applications. Graduate students and professionals in academia and industry in the fields of nanomaterials/nanotechnology, polymers, bioengineering and materials engineering will find this book a valuable resource for their research in this ever-growing field.
From metals and semiconductors to organic compounds and/or polymers, structures and properties are continuously being redefined, as building blocks in nanomaterials are leading to a plethora of novel devices and functions. For years, nanotechnology has paved the way for the marriage of many broad science disciplines, leading to life-altering innovations in medicine, electronics, biomaterials energy production, and consumer products. The field still remains broad and young, with debates ongoing about its overall impact.
Providing an eclectic snapshot of the current state of the art and future implications of the field, Nanomaterials, Polymers, and Devices: Materials Functionalization and Device Fabrication presents topics grouped into three categorical focuses:
* The synthesis, mechanism and functionalization of nanomaterials, such as carbon nanotubes, graphene, silica, and quantum dots
* Various functional devices which properties and structures are tailored with emphasis on nanofabrication. Among discussed are light emitting diodes, nanophotonic, nano-optical, and photovoltaic devices
* Nanoelectronic devices, which include semiconductor, nanotube and nanowire-based electronics, single-walled carbon-nanotube based nanoelectronics, as well as thin-film transistors
Bringing the disciplines of physics, chemistry and materials engineering closer together, this well-researched monograph exudes the versatility of nanotechnology in materials applications. Graduate students and professionals in academia and industry in the fields of nanomaterials/nanotechnology, polymers, bioengineering and materials engineering will find this book a valuable resource for their research in this ever-growing field.
Inhaltsverzeichnis zu „Nanomaterials, Polymers and Devices “
CONTENTSContributors vii
Foreword xi
1 The Functionalization of Carbon Nanotubes and Nano-Onions 1
Karthikeyan Gopalsamy, Zhen Xu, Chao Gao, and Eric S.-W. Kong
2 The Functionalization of Graphene and its Assembled Macrostructures 19
Haiyan Sun, Zhen Xu, and Chao Gao
3 Devices Based on Graphene and Graphane 45
Xiao-Dong Wen, Tao Yang, and Eric S.-W. Kong
4 Large-Area Graphene and Carbon Nanosheets for Organic Electronics: Synthesis and Growth Mechanism 81
Han-Ik Joh, Sukang Bae, Sungho Lee, and Eric S.-W. Kong
5 Functionalization of Silica Nanoparticles for Corrosion Prevention of Underlying Metal 121
Dylan J. Boday, Jason T. Wertz, and Joseph P. Kuczynski
6 New Nanoscale Material: Graphene Quantum Dots 141
Dong-Ick Son and Won-Kook Choi
7 Recent Progress of Iridium(III) Red Phosphors for Phosphorescent Organic Light-Emitting Diodes 195
Cheuk-Lam Ho and Wai-Yeung Wong
8 Four-Wave Mixing and Carrier Nonlinearities in Graphene-Silicon Photonic Crystal Cavities 215
Tingyi Gu and Chee W. Wong
9 Polymer Photonic Devices 233
Ziyang Zhang and Norbert Keil
10 Low Dielectric Contrast Photonic Crystals 273
Jan H. Wülbern and Manfred Eich
11 Microring Resonator Arrays for Sensing Applications 291
Daniel Pergande, Vanessa Zamora, Peter Lützow, and Helmut Heidrich
12 Polymers, Nanomaterials, and Organic Photovoltaic Devices 319
Thomas Tromholt and Frederik C. Krebs
13 Next-Generation GaAs Photovoltaics 341
Giacomo Mariani and Diana L. Huffaker
14 Nanocrystals, Layer-by-Layer Assembly, and Photovoltaic Devices 357
Jacek J. Jasieniak, Brandon I. MacDonald, and Paul Mulvaney
15 Nanostructured Conductors for Flexible Electronics 395
Jonghwa Park, Sehee Ahn, and Hyunhyub Ko
16 Graphene, Nanotube, and NW-Based Electronics 413
Xi Liu, Xiaoling Shi, Lei Liao, Zhiyong Fan, and Johnny C. Ho
17
... mehr
Nanoelectronics Based on Single-Walled Carbon Nanotubes 501
Qing Cao and Shu-jen Han
18 Monolithic Graphene-Graphite Integrated Electronics 523
Michael C. Wang, Jonghyun Choi, Jaehoon Bang, SungGyu Chun, Brandon Smith, and SungWoo Nam
19 Thin-Film Transistors Based on Transition Metal Dichalcogenides 539
Woong Choi and Sunkook Kim
Index 563
Qing Cao and Shu-jen Han
18 Monolithic Graphene-Graphite Integrated Electronics 523
Michael C. Wang, Jonghyun Choi, Jaehoon Bang, SungGyu Chun, Brandon Smith, and SungWoo Nam
19 Thin-Film Transistors Based on Transition Metal Dichalcogenides 539
Woong Choi and Sunkook Kim
Index 563
... weniger
Bibliographische Angaben
- Autor: E. S. W. Kong
- 2015, 1. Auflage, 616 Seiten, Maße: 21,8 x 28,8 cm, Gebunden, Englisch
- Herausgegeben: E. S. W. Kong
- Verlag: Wiley & Sons
- ISBN-10: 0470048069
- ISBN-13: 9780470048061
Sprache:
Englisch
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