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Like its predecessor this book is devoted to the materials, manufacturing and applications aspects of organic thin-film transistors. Onceagain authored by the most renowned experts from this fascinating and fast-moving area of research, it offers a joint perspective bothbroad and in-depth on the latest developments in the areas of materials chemistry, transport physics, materials characterization, manufacturing technology, and circuit integration of organic transistors. With its many figures and detailed index, this book once again also serves as a ready reference.
Sommario
PrefacePART I: MaterialsORGANIC SEMICONDUCTOR MATERIALS FOR TRANSISTORSGeneral ConsiderationsMaterials Properties of Organic SemiconductorsSmall Molecule SemiconductorsPolymer SemiconductorsSemiconductor BlendsDevice Physics and ArchitectureSummaryCHARACTERIZATION OF ORDER AND ORIENTATION IN SEMICONDUCTING POLYMERSIntroductionX-Ray DiffractionNear-Edge X-Ray Absorption Fine Structure (NEXAFS) SpectroscopyCHARGE TRANSPORT THEORIES IN ORGANIC SEMICONDUCTORSIntroductionWell-Ordered Systems: Organic Single CrystalsDisordered MaterialsConclusionsSILYLETHYNE-SUBSTITUTED ACENES AND HETEROACENESIntroductionSilylethyne-Substituted PentacenesCrystal PackingHeteroacenesSilylethynyl Heteroacene-Based PolymersSilylethynyl Heteroacene-Based PhotovoltaicsConclusionCONJUGATED SEMICONDUCTORS FOR ORGANIC n-CHANNEL TRANSISTORS AND COMPLEMENTARY CIRCUITSIntroductionBasics of Field-Effect Transistors and Complementary CircuitsMaterial Design and Needs for n-Channel OTFTsn-Channel Semiconductors for OTFTsConclusions and OutlookLOW-VOLTAGE ELECTROLYTE-GATED OTFTs AND THEIR APPLICATIONSOverviewIntroduction to Electrolyte-Gated Organic TransistorsApplications of Electrolyte-Gated Organic TransistorsConclusions and OutlookPART II: ManufacturingPRINTING TECHNIQUES FOR THIN-FILM ELECTRONICSThe Motivation for Printing of Thin-Film Electronic DevicesRequirements for Printing Techniques for Electronic FabricationA Survey of Printing Techniques for Printed ElectronicsPattern Formation During PrintingPrinted Device ConsiderationsPICOLITER AND SUBFEMTOLITER INK-JET TECHNOLOGIES FOR ORGANIC TRANSISITORSIntroductionSilver Nanoparticle InkInk-Jet Technologies with Pico- and Subfemtoliter AccuraciesManufacturing Processes and Electrical Characteristics of Organic TransisitorsDiscussion and Future Prospects of Large-Area Printed ElectronicsINK-JET PRINTING OF DOWNSCALED ORGANIC ELECTRONICS DEVICESIntroductionInk-Jet Printing: Technologies, Tools, and MaterialsHigh-Resolution Printing of Highly Conductive ElectrodesPrinting of Downscaled Organic Thin Film TransistorsConclusions and OutlookINTERPLAY BETWEEN PROCESSING, STRUCTURE, AND ELECTRONIC PROPERTIES IN SOLUBLE SMALL-MOLECULE ORGANIC SEMICONDUCTORSIntroductionTransport Limits in Crystalline SemiconductorsStructure-Processing-Properties Relationship in Small-Molecule Organic Thin-Film TransistorsAdvanced Film ProcessingSummaryPART III: ApplicationsLIGHT-EMITTING ORGANIC TRANSISTORSIntroductionUnipolar Light-Emitting FETsAmbipolar Light-Emitting FETsOther Field-Effect-Based Light-Emitting DevicesConclusionsDESIGN METHODOLOGIES FOR ORGANIC RFID TAGS AND SENSOR READOUT ON FOILIntroductionOrganic RFID TagsTransistor-Level Design with Organic TransistorsConclusions
Info autore
Hagen Klauk received his PhD in electrical engineering from "The Pennsylvania State University" in 1999, receiving the Xerox Research Award for his doctorate on organic thin film transistors. In 2000 he joined Infineon Technologies in Erlangen, Germany and since 2005 he has been a research group leader at the Max Planck Institute for Solid State Research in Stuttgart, Germany, where he is investigating a wide range of novel organic device concepts.
Riassunto
Like its predecessor this book is devoted to the materials, manufacturing and applications aspects of organic thin-film transistors. Once
again authored by the most renowned experts from this fascinating and fast-moving area of research, it offers a joint perspective both
broad and in-depth on the latest developments in the areas of materials chemistry, transport physics, materials characterization, manufacturing technology, and circuit integration of organic transistors. With its many figures and detailed index, this book once again also serves as a ready reference.