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Handbook of Printed Electronics: From Materials to Processes to Systems

Editat de Jasmin Aghassi, Christian Punckt
en Limba Engleză Hardback – 13 feb 2023
This handbook is a world-class reference volume on the processes, industry requirements, and emerging application areas of printed electronics. Containing contributions from experts in academia and industry, it provides a balanced presentation of the field and is appropriate for a wide audience, from students, to researchers and industrial product designers. 

It is organized into 3 sections; the first focuses on materials used in printed electronics devices. Chapters cover the requirements for components such as active materials, interconnects, passives, substrates and encapsulation, current state-of-the-art, and possible future developments. Fundamental performance requirements are also critically assessed and compared with properties of materials currently available.
The second section covers all aspects of available and foreseeable process technology and critically reviews the suitability of methods and materials for production processes. Topics that are addressed include fabrication, dispersion and inks, film formation and drying processes, sheet-based and roll-to-roll printing techniques, encapsulation processes, microcontact printing, and nano-imprint lithography.
The last section presents an overview of device-level printed electronics and technologies that have reached a level of maturation that allows for design and fabrication of integrated modules and systems. The current research and industrial developments are reviewed for printed lighting and displays, printed photovoltaics, organic/inorganic/hybrid components for printed electronics, printed transistors and logic structures, and printed energy storage devices. 
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Specificații

ISBN-13: 9783030413910
ISBN-10: 3030413918
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2023
Editura: Springer
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Active Materials for Printed Energy Harvesting Applications.- Active Materials for Printed Sensor Applications.- Materials for Printed Energy Storage Devices.- Active Materials for Printed Lighting and Display Applications.- Transparent Materials.- Optoelectronic Properties of Printed Materials.- Active Materials for Printed Memory Devices.- Active Materials for Printed Transistors and Logic Circuits.- Passive Conductive Materials for Printed Electronics Applications.- Dielectric Gating Materials and Concepts.- Electrolyte Gating Materials and Concepts.- Encapsulation Layers in Printed Electronics.- Substrates for Printed Electronics Fabrication.- Theory and Computation of Organic Materials.- Theory and Computation of Inorganic Materials.- Fabrication of Printed Electronics Devices: Concepts and Challenges.- Dispersions and Inks for Printable Electronics.- Engineering of Film Formation and Drying Processes.- Sheet-based Printing Techniques for Electronic Applications.- Roll-to-Roll Printing Techniques for Electronic Applications.- Microcontact Printing and Nano-Imprint Lithography for Electronic Applications.- Encapsulation Processes for Printed Electronic Applications.- Printed Electronics: Printing process Simulation.- Printed Lighting and Displays: Current Research.- Printed Lighting and Displays: Industrial Developments.- Printed Photovoltaics: Current Research.- Printed Photovoltaics: Industrial Developments.- Organic/Inorganic/Hybrid Components for Printed Electronics: Current Research.- Organic/Inorganic/Hybrid Components for Printed Electronics: Industrial Developments.- Printed Transistors and Logic Structures: Current Research.- Printed Transistors and Logic Structures: Industrial Developments.- Printed Energy Storage Devices: Current Research.- Printed Energy Storage Devices: Industrial Developments.- Printed Cyber-Physical Systems for the Internet of Things.- Printed Sensors.- Printed Wearables.- Hybrid Flexible Electronics.- Theory and Modelling of Printed Photovoltaics.- Theory and Modelling of Printed Devices.- Theory and Modelling of Energy Storage Devices.- Theory and Modelling of Printed Transistors and Logic Circuits.- Technology Perspectives of Printed Electronics.- Printed Electronics: Market Pull and Technology Roadmap.- International Standardization of Printed Electronics: An ISO/IEC Perspective.

Notă biografică

Jasmin Aghassi is Managing Director of the Competence Network for Nanotechnology and Nanomaterials (NanoMat), Karlsruhe Institute of Technology (KIT)/University of Karlsruhe, and is Professor of Electrical Engineering at Applied University of Offenburg.  

Christian Punckt is Associate Director of the Competence Network for Nanotechnology and Nanomaterials (NanoMat), Karlsruhe Institute of Technology (KIT)/University of Karlsruhe.  

Caracteristici

Thorough review of the state of the art in the field of printed electronics, with a balanced presentation of both academia and industry

Contains a critical review of existing concepts and challenges, as well as an outlook on future technologies and possibilities 

Presents detailed chapters on theory, modelling, and applications of printed electronics