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Transparent Electronics: From Synthesis to Applications - Hardcover

 
9780470990773: Transparent Electronics: From Synthesis to Applications

Synopsis

The challenge for producing “invisible” electronic circuitry and opto-electronic devices is that the transistor materials must be transparent to visible light yet have good carrier mobilities. This requires a special class of materials having “contra-indicated properties” because from the band structure point of view, the combination of transparency and conductivity is contradictory.

Structured to strike a balance between introductory and advanced topics, this monograph juxtaposes fundamental science and technology / application issues, and essential materials characteristics versus device architecture and practical applications. The first section is devoted to fundamental materials compositions and their properties, including transparent conducting oxides, transparent oxide semiconductors, p-type wide-band-gap semiconductors, and single-wall carbon nanotubes. The second section deals with transparent electronic devices including thin-film transistors, photovoltaic cells, integrated electronic circuits, displays, sensors, solar cells, and electro-optic devices.

Describing scientific fundamentals and recent breakthroughs such as the first “invisible” transistor, Transparent Electronics: From Synthesis to Applications brings together world renowned experts from both academia, national laboratories, and industry.

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About the Author

Antonio Facchetti is a research professor in the Department of Chemistry and the Materials Research Center at Northwestern University in Evanston (USA). He obtained his Laurea degree in Chemistry cum laude and a PhD in Chemical Sciences from the University of Milan (Italy). Professor Facchetti then carried out postdoctoral research at the University of California-Berkeley with Profesor Andrew Streitwieser and at Northwestern University with Professor Tobin J. Marks and in 2002 he joined Northwestern University. Professor Facchetti is a co-founder of Polyera Corporation and has published about 110 research articles and holds 23 patents. His research interests include organic semiconducting and dielectric materials, conducting polymers, molecular electronics, organic second- and third-order nonlinear optical materials, and lanthanide complexes for magnetic resonance imaging.

Professor Tobin J. Marks is Vladimir N. Ipatieff Professor of Catalytic Chemistry and Professor of Materials Science and Engineering in the Department of Chemistry and the Materials Research Center, Northwestern University. He obtained his PhD from MIT (USA). Professor Marks has received 58 named lectureships and awards, including the ACS Awards in Polymeric Materials, in Organometallic Chemistry and in Inorganic Chemistry, in the Chemistry of Materials, the Cotton Medal, the Linus Pauling Medal, the Karl Ziegler Medal of the German Chemical Society and the Frankland Medal of the Royal Society of Chemistry. Professor Marks has published over 770 research articles and holds 70 patents. He is also on the editorial boards of 9 major journals and is consultant or advisory board member for 5 corporations and start-ups. His current research interests include electronic and photonic materials, CVD, homogeneous catalysis, organometallic chemistry, mind-boggling catalytic transformations, and metal ion biochemistry.

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  • PublisherWiley
  • Publication date2010
  • ISBN 10 0470990775
  • ISBN 13 9780470990773
  • BindingHardcover
  • LanguageEnglish
  • Edition number1
  • Number of pages470
  • EditorFacchetti Antonio, Marks Tobin

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Tobin J. Marks; Antonio Facchetti
Published by Wiley, 2010
ISBN 10: 0470990775 ISBN 13: 9780470990773
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Hardcover. Condition: Good. 1st Edition. Hardcover, xxi + 448pp + 4 pages of glossy colour plates, NOT ex-library. Weight over 1kg. Pencil annotations/lines on 9 pages; traces of erased pencil on a few pages; sticker remnants inside the front board. Else clean and bright, firmly bound. Issued without a dust jacket. -- Contents: 1 Combining Optical Transparency with Electrical Conductivity: Challenges & Prospects [Electronic Properties of & Carrier Generation in Conventional TCO Hosts; Magnetically Mediated TCO; Multicomponent TCO Hosts; Electronic Properties of Light Metal Oxides; Carrier Delocalization in Complex Oxides; Outlook: Toward an Ideal TCO] 2 Transparent Oxide Semiconductors: Fundamentals & Recent Progress [Electronic Structure in Oxides: Carrier Transport Paths in Semiconductors; Materials Design of p-Type TOSs; Layered Oxychalcogenides: Improved p-Type Conduction and Room-Temperature Stable Excitons; Nanoporous Crystal, C12A7: New Functions Created by Subnanometer Cages and Clathrated Anions; TAOSs and their TFT Applications; Perspective] 3 p-Type Wide-Band-Gap Semiconductors for Transparent Electronics [Applications; Challenges Associated with p-Type Wide-Gap Semiconductors; Materials; Outlook and Prospects] 4 Lead Oxides: Synthesis and Applications [Overview of Synthetic Methods and Approaches; Synthesis of Lead Oxides; Applications of Lead Oxides] 5 Deposition and Performance Challenges of Transparent Conductive Oxides on Plastic Substrates [Challenges with Plastic Substrates; TCO Performance Comparison: Glass vs Plastic Substrates; Conductivity Mechanisms in TCO; Qualitative TCO Doping Model; Industrial TCO Deposition Methods on Plastic Substrates; Developing a TCO Deposition Process; Controlling TCO E/O Properties; TSO for Transparent Oxide Electronics; p-Type TCO and TSO; Key Points and Summary] 6 Oxide Semiconductors: From Materials to Devices [Historical Background: From Field Effect Transistors (FETs) to TFTs; Transparent Oxide Semiconductors; Emerging Devices Based on Cellulose Paper: Paper FETs; Conclusions and Outlook]; 7 Carbon Nanotube Transparent Electrodes 8 Application of Transparent Amorphous Oxide Thin Film Transistors to Electronic Paper [Microencapsulated Electrophoretic Display; Flexible Electronic Paper; Application of Transparent Electronics] 9 Solution-Processed Electronics Based on Transparent Conductive Oxides 10 Transparent Metal Oxide Nanowire Electronics [Nanowire Transistors; Transparent Nanowire Circuits and Displays] 11 Application of Transparent Oxide Semiconductors for Flexible Electronics [Zinc Oxide; Indium Oxide; SnO2 Thin Film Transistors; Gate Dielectrics; Transistors on Plastic Substrates; Patterning] 12 Transparent OLED Displays [Transparent OLEDs; Transparent Thin Film Transistors; Transparent Active Matrix OLED Displays] 13 Oxide-Based Electrochromics [Electrochromic Devices; Some Recent Research Results] 14 Transparent Solar Cells Based on Organic Polymers [Multiple Metal Layer Structure as Transparent Cathode; Transparent Metal Oxide for Anode of High Performance TSC; TSC Fabricated by Lamination] 15 Organic Electro-Optic Modulators with Substantially Enhanced Performance Based on Transparent Electrodes [TC-Based Low-Voltage, High-Speed Organic EO Modulators; Full Design: A Detailed Example of High-Frequency Modulator Design; Experimental Realization of a TC-Based Organic EO Modulator & Measurement Result] 16 Naphthalenetetracarboxylic Diimides as Transparent Organic Semiconductors [Initial Demonstration of NTCDI Semiconductor FETs; Further Structural Elaboration of NTCDI Molecular Semiconductors; Use of NTCDI Semiconductors in Multifunctional Transistors] 17 Transparent Metal Oxide Semiconductors as Gas Sensors [Sensing with Nanostructures; Synthesis of Nanostructures for Sensing; Gas Sensing with Nanowires; Chemoresistive Sensing Properties of In2O3 Nanowires]; Index. Seller Inventory # 007098

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Editor: Antonio Facchetti (Northwestern University); Editor: Tobin Marks (Dept of Chem. & the Mater. Res. Center)
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Hardcover. Condition: new. Hardcover. The challenge for producing invisible electronic circuitry and opto-electronic devices is that the transistor materials must be transparent to visible light yet have good carrier mobilities. This requires a special class of materials having contra-indicated properties because from the band structure point of view, the combination of transparency and conductivity is contradictory. Structured to strike a balance between introductory and advanced topics, this monograph juxtaposes fundamental science and technology / application issues, and essential materials characteristics versus device architecture and practical applications. The first section is devoted to fundamental materials compositions and their properties, including transparent conducting oxides, transparent oxide semiconductors, p-type wide-band-gap semiconductors, and single-wall carbon nanotubes. The second section deals with transparent electronic devices including thin-film transistors, photovoltaic cells, integrated electronic circuits, displays, sensors, solar cells, and electro-optic devices. Describing scientific fundamentals and recent breakthroughs such as the first invisible transistor, Transparent Electronics: From Synthesis to Applications brings together world renowned experts from both academia, national laboratories, and industry. Transparent electronics, an emerging technology, aims to produce?invisible? electronic circuits and devices. TransparentElectronics provides fundamental information on transparentelectronic materials, circuits, and devices. This book combinesintroductory and advanced topics as well as scientific andapplication issues. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9780470990773

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ISBN 10: 0470990775 ISBN 13: 9780470990773
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Condition: New. Transparent electronics, an emerging technology, aims to produce?invisible? electronic circuits and devices. TransparentElectronics provides fundamental information on transparentelectronic materials, circuits, and devices. This book combinesintroductory and advanced topics as well as scientific andapplication issues. Editor(s): Facchetti, Antonio; Marks, Tobin. Num Pages: 470 pages, Illustrations. BIC Classification: TG; TJ. Category: (P) Professional & Vocational. Dimension: 251 x 176 x 30. Weight in Grams: 934. . 2010. 1st Edition. Hardcover. . . . . Seller Inventory # V9780470990773

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