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📙 Organic Electronics: Structural and Electronic Properties of OFETs by — epub download


Organic molecules are currently being investigated with regard to their application as active components in semiconductor devices. Whereas devices containing organic molecules for the generation of light - organic light emitting diodes (OLED) - have already reached the market (they e.g. display information on mobile phones), transistors where organic molecules are used to actively control currents and voltages are still in the development stage.
In this book the principle problems related to using organic materials as semiconductors and to construct functioning devices will be addressed.
A particular emphasis will be put on the difference between inorganic semiconductors such as Si, Ge and GaAs and organic semiconductors (OSC). The special properties of such soft matter require particular approaches for processing characterization and device implementation, which are quite different from the approach used for conventional semiconductors.

Content:
Chapter 1 Organic Transistors as a Basis for Printed Electronics (pages 1–15): W. Fix, A. Ullmann, R. Blache and K. Schmidt
Chapter 2 Printable Electronics: Flexibility for the Future (pages 17–34): Mark A. M. Leenen, Volker Arning, Heiko Thiem, Jurgen Steiger and Ralf Anselmann
Chapter 3 Fluorinated Phthalocyanines as Molecular Semiconductor Thin Films (pages 35–60): H. Brinkmann, C. Kelting, S. Makarov, O. Tsaryova, G. Schnurpfeil, D. Wohrle and D. Schlettwein
Chapter 4 Novel Organic Semiconductors and Processing Techniques for Organic Field?Effect Transistors (pages 61–74): H. N. Tsao, H. J. Rader, W. Pisula, A. Rouhanipour and K. Mullen
Chapter 5 Assembly, Structure, and Performance of an Ultra?Thin Film Organic Field?Effect Transistor (OFET) Based on Substituted Oligothiophenes (pages 75–94): K. Haubner, E. Jaehne, H.?J. P. Adler, D. Koehler, C. Loppacher, L. M. Eng, J. Grenzer, A. Herasimovich and S. Scheiner
Chapter 6 Organic Transistors Utilising Highly Soluble Swivel?Cruciform Oligothiophenes (pages 95–111): Achmad Zen, Patrick Pingel, Dieter Neher and Ullrich Scherf
Chapter 7 Chemical Approaches to the Deposition of Metal Electrodes onto Self?Assembled Monolayers – A Step Towards the Fabrication of SAM?Based Organic Field?Effect Transistors (pages 113–137): Heidi Thomas, Jan Muller and Andreas Terfort
Chapter 8 Growth Morphologies and Charge Carrier Mobilities of Pentacene Organic Field Effect Transistors with RF Sputtered Aluminium Oxide Gate Insulators on ITO Glass (pages 139–160): M. Voigt, J. Pflaum and M. Sokolowski
Chapter 9 In Situ X?Ray Scattering Studies of OFET Interfaces (pages 161–187): Alexander Gerlach, Stefan Sellner, Stefan Kowarik and Frank Schreiber
Chapter 10 X?Ray Structural Studies of Low and High Molecular Weight Poly(3?Hexylthiophene) (pages 189–205): S. Joshi, S. Grigorian and U. Pietsch
Chapter 11 Molecular Beam Deposition and Characterisation of Thin Organic Films on Metals for Applications in Organic Electronics (pages 207–233): G. Witte and Prof. Dr. Ch. Woll
Chapter 12 Fundamental Interface Properties in OFETs: Bonding, Structure and Function of Molecular Adsorbate Layers on Solid Surfaces (pages 235–262): S. Soubatch, R. Temirov and F. S. Tautz
Chapter 13 Metal/Organic Interface Formation Studied In Situ by Resonant Raman Spectroscopy (pages 263–280): G. Salvan, B. A. Paez, D. R. T. Zahn, L. Gisslen and R. Scholz
Chapter 14 Development of Single?Crystal OFETs Prepared on Well?Ordered Sapphire Substrates (pages 281–298): S. Sachs, M. Paul, F. Holch, J. Pernpeintner, P. Vrdoljak, M. B. Casu, A. Scholl and E. Umbach
Chapter 15 Pentacene Devices: Molecular Structure, Charge Transport and Photo Response (pages 299–315): Bert Nickel
Chapter 16 Characteristics and Mechanisms of Hysteresis in Polymer Field?Effect Transistors (pages 317–346): G. Paasch, S. Scheinert, A. Herasimovich, I. Horselmann and Th. Lindner
Chapter 17 Ambipolar Charge Carrier Transport in Organic Semiconductor Blends (pages 347–372): Markus Bronner, Andreas Opitz and Wolfgang Brutting
Chapter 18 Gate Dielectrics and Surface Passivation Layers for Organic Field Effect Transistors (pages 373–400): T. Diekmann and U. Hilleringmann
Chapter 19 Influence of Metal Diffusion on the Electronic Properties of Pentacene and Diindenoperylene Thin Films (pages 401–426): M. Scharnberg, R. Adelung and F. Faupel
Chapter 20 Potentiometry on Pentacene OFETs: Charge Carrier Mobilities and Injection Barriers in Bottom and Top Contact Configurations (pages 427–444): R. Scholz, D. Lehmann, A.?D. Muller, F. Muller and D. R. T. Zahn
Chapter 21 Microscopic and Spectroscopic Characterisation of Interfaces and Dielectric Layers for OFET Devices (pages 445–468): K. Muller, Y. Burkov, D. Mandal, K. Henkel, I. Paloumpa, A. Goryachko and D. Schmei?er
Chapter 22 Scaling Limits and MHz Operation in Thiophene?Based Field?Effect Transistors (pages 469–497): A. Hoppe, T. Balster, T. Muck and V. Wagner
Chapter 23 Aluminium Oxide Film as Gate Dielectric for Organic FETs: Anodisation and Characterisation (pages 499–511): X.?D. Dang, W. Plieth, S. Richter, M. Plotner and W.?J. Fischer
Chapter 24 Electronic States at the Dielectric/Semiconductor Interface in Organic Field?Effect Transistors (pages 513–538): Niels Benson, Christian Melzer, Roland Schmechel and Heinz von Seggern
Chapter 25 Aspects of the Charge Carrier Transport in Highly?Ordered Crystals of Polyaromatic Molecules (pages 539–564): J. Pflaum, J. Niemax, S. Meyer and A. K. Tripathi
Chapter 26 Carbon Nanotube Transistors – Chemical Functionalisation and Device Characterisation (pages 565–593): Kannan Balasubramanian, Eduardo J. H. Lee, Ralf Thomas Weitz, Marko Burghard and Klaus Kern
Chapter 27 Contact Effects in Cu(TCNQ) Memory Devices (pages 595–612): Artur Hefczyc, Lars Beckmann, Eike Becker, Hans?Hermann Johannes and Wolfgang Kowalsky
Chapter 28 Organic Field?Effect Transistors for Spin?Polarised Transport (pages 613–627): M. Michelfeit, G. Schmidt, J. Geurts and L. W. Molenkamp

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