Michael C. Petty
Electrical Processes in Organic Thin Film Devices: From Bulk Materials to Nanoscale Architectures
Electrical Processes in Organic Thin Film Devices: From Bulk Materials to Nanoscale Architectures
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- More about Electrical Processes in Organic Thin Film Devices: From Bulk Materials to Nanoscale Architectures
Michael C. Petty's book "Electrical Processes in Organic Thin Film Devices" provides an in-depth treatment of the electrical behaviour of organic electronic devices, focusing on first principles. It covers band theory, thin film device architectures, nanostructures, applications, emerging architectures, single molecule electronics, and biologically inspired devices. The book also includes an introduction to electronic and vibrational states in organic solids, comprehensive explorations of electrical conductivity, and practical considerations of defects and nanoscale phenomena. It is ideal for electronics developers and researchers in industry and academia.
Format: Hardback
Length: 480 pages
Publication date: 17 February 2022
Publisher: John Wiley and Sons Ltd
A comprehensive exploration of the fundamental electrical behavior in organic electronic device architectures is presented in the book "Electrical Processes in Organic Thin Film Devices: From Bulk Materials to Nanoscale Architectures." Distinguished researcher Michael C. Petty delves deep into the electrical properties of organic materials, focusing on first principles. The author offers an insightful introduction to the physical processes that govern the electrical conductivity of organic substances, shedding light on the underlying mechanisms.
The text begins with a foundational discussion of band theory, which serves as the framework for understanding the electronic structure of materials. It then proceeds to examine the impact of thin film device architectures and nanostructures on the electrical behavior of organic devices. The book explores the applications of these technologies in existing market devices, such as displays, as well as those in the pipeline, including transistors, solar cells, and memories.
Furthermore, "Electrical Processes in Organic Thin Film Devices" delves into emerging organic thin film architectures and explores the potential for single molecule electronics and biologically inspired devices. The book provides a detailed introduction to electronic and vibrational states in organic solids, encompassing classical band theory, disordered semiconductors, and lattice vibrations. Comprehensive explorations of electrical conductivity are presented, encompassing electronic and ionic processes, carrier drift, diffusion, the Boltzmann Transport Equation, excess carriers, recombination, doping, and superconductivity.
An overview of important electro-active organic materials, such as molecular crystals, charge-transfer complexes, conductive polymers, carbon nanotubes, and graphene, is also provided. Practical considerations of defects and nanoscale phenomena, including transport processes, are discussed to provide a practical understanding of these complex phenomena.
In conclusion, "Electrical Processes in Organic Thin Film Devices" is a valuable resource for researchers, engineers, and students interested in the field of organic electronics. It offers a comprehensive treatment of the fundamental electrical behavior in organic electronic device architectures, covering a wide range of topics from band theory to emerging technologies. The book provides a deep understanding of the physical processes that govern the performance of organic devices and their potential applications in various industries.
Weight: 1162g
Dimension: 185 x 260 x 30 (mm)
ISBN-13: 9781119631279
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