Large area and flexible electronics /

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Other Authors: Caironi, Mario (Editor), Noh, Yong-Young (Editor)
Format: Electronic eBook
Language:English
Published: Weinheim : Wiley-VCH, [2015]
©2015
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Online Access:CONNECT

MARC

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245 0 0 |a Large area and flexible electronics /  |c edited by Mario Caironi and Yong-Young Noh. 
260 |a Weinheim :  |b Wiley-VCH,  |c [2015] 
264 4 |c ©2015 
300 |a 1 online resource (xxvii, 557 pages) :  |b illustrations (chiefly color) 
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504 |a Includes bibliographical references and index. 
588 0 |a Online resource; title from PDF title page (Wiley Online Library, viewed April 9, 2015). 
520 8 |a Annotation  |b From materials to applications, this ready reference covers the entire value chain from fundamentals via processing right up to devices, presenting different approaches to large-area electronics, thus enabling readers to compare materials, properties and performance. Divided into two parts, the first focuses on the materials used for the electronic functionality, covering organic and inorganic semiconductors, including vacuum and solution-processed metal-oxide semiconductors, nanomembranes and nanocrystals, as well as conductors and insulators. The second part reviews the devices and applications of large-area electronics, including flexible and ultra-high-resolution displays, light-emitting transistors, organic and inorganic photovoltaics, large-area imagers and sensors, non-volatile memories and radio-frequency identification tags. With its academic and industrial viewpoints, this volume provides in-depth knowledge for experienced researchers while also serving as a first-stop resource for those entering the field. 
505 0 |a Large Area and Flexible Electronics; Contents; List of Contributors; Overview; Book Structure and Aim; Acknowledgments; References; Part I: Materials; Chapter 1 Polymeric and Small-Molecule Semiconductors for Organic Field-Effect Transistors; 1.1 Introduction; 1.2 Organic Semiconductor Structural Design; 1.3 Thin-Film Transistor Applications; 1.4 p-Channel Semiconductors; 1.4.1 Polymers; 1.4.2 Small Molecules; 1.5 n-Channel Semiconductors; 1.5.1 Polymers; 1.5.2 Small Molecules; 1.6 Ambipolar Semiconductors; 1.6.1 Polymers; 1.6.2 Small Molecules; 1.7 Conclusions; References. 
505 8 |a Chapter 2 Metal-Oxide Thin-Film Transistors for Flexible Electronics2.1 Introduction; 2.2 Metal-Oxide TFTs; 2.2.1 Advantages and Applications; 2.2.2 Vacuum Deposition; 2.2.3 Solution Processing; 2.3 Solution-Processed MO Thin Films; 2.3.1 Nanoparticle-Based Process; 2.3.2 Sol-Gel-Based Process; 2.3.3 Hybrid Type; 2.4 Low-Temperature-Processed MO TFTs for Flexible Electronics; 2.4.1 Low-Temperature-Processed MO TFTs; 2.4.1.1 Annealing Environment; 2.4.1.2 Ink Formulation; 2.4.1.3 Alternate Annealing Process; 2.4.2 Photochemical Activation of Oxide Semiconductors; 2.5 Summary; References. 
505 8 |a Chapter 3 Carbon Nanotube Thin-Film Transistors3.1 Introduction; 3.2 Individual SWCNTs and SWCNT Thin Films; 3.3 Chemical Vapor Deposition Growth of SWCNT TFTs; 3.4 Solution-Based Methods for SWCNT TFTs; 3.5 Inkjet Printing of Flexible SWCNT TFTs; 3.6 Fabrication Schemes for High-Performance Inkjet-Printed SWCNT TFTs; 3.7 Inkjet Printing of SWCNT CMOS Inverters; 3.8 Inkjet Printing of Aligned SWCNT Films; 3.9 Conclusion; References; Chapter 4 Organic Single-Crystalline Semiconductors for Flexible Electronics Applications; 4.1 Introduction. 
505 8 |a 4.2 Electronic and Structural Properties of Single Crystals4.2.1 Intrinsic Transport Properties; 4.2.2 Crystal Dimensionality; 4.3 Crystallization Techniques; 4.3.1 Growth from Vapor Phase; 4.3.2 Growth from Solution; 4.4 Single-Crystal Flexible Electronic Devices; 4.4.1 Fundamental Mechanics for Flexible Electronics; 4.4.2 Mechanical Versatility of Organic Single Crystals; 4.4.3 Importance of Mechanical Properties Knowledge; 4.4.4 The Elastic Constants of Rubrene Single Crystals; 4.5 Strategies for Flexible Organic Single-Crystal Device Fabrication. 
505 8 |a 4.5.1 Discrete Ultrathin Single-Crystal Transistor4.5.2 Transistor Arrays Based on Micropatterned Single Crystals; 4.5.3 Flexible Single-Crystal Nanowire Devices; 4.6 Conclusions; Acknowledgments; References; Chapter 5 Solution-Processable Quantum Dots; 5.1 Introduction; 5.2 Optimization of the Colloidal Synthesis of Quantum Dots by Selection of Suitable Solvents, Ligands, and Precursors; 5.3 Large-Scale Synthesis of Quantum Dots; 5.4 Surface Chemistry of Quantum Dots; 5.5 Post-Synthetic Chemical Modification of Nanocrystals; 5.6 Conclusions and Outlook; References. 
650 0 |a Flexible printed circuits. 
650 0 |a Electronics  |x Materials. 
700 1 |a Caironi, Mario,  |e editor. 
700 1 |a Noh, Yong-Young,  |e editor. 
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