Electrical processes in organic thin film devices : from bulk materials to nanoscale architectures / Michael C. Petty.
Material type: TextPublisher: Hoboken, NJ : John Wiley & Sons, Inc., 2022Edition: First editionDescription: xxxv, 438 pages : illustrations ; 25 cmContent type:- text
- unmediated
- volume
- Ref./621.38152/P512 23/eng/20211020
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds |
---|---|---|---|---|---|---|---|
Book | DSSC LEARNING RESOURCE CENTER Reference | General Reference | Ref./621.38152/P512 (Browse shelf(Opens below)) | Available | 010040 |
Browsing DSSC LEARNING RESOURCE CENTER shelves, Shelving location: Reference, Collection: General Reference Close shelf browser (Hides shelf browser)
No cover image available | No cover image available | |||||||
Ref./338.14/Ap586 Applied agricultural practices for mitigating climate change / | Ref./615.9003/T249 Glossary of terms used in molecular toxicology / | Ref./616.96/L836 Parasitology : a conceptual approach / | Ref./621.38152/P512 Electrical processes in organic thin film devices : from bulk materials to nanoscale architectures / | Ref./641.698/Se19 Seaweeds as plant fertilizer, agricultural biostimulants and animal fodder / | Ref./657/St512 Principles of financial accounting / | Ref./657/W251 Corporate financial accounting / |
Includes bibliographical references and index.
"In Electrical Processes in Organic Thin Film Devices: From Bulk Materials to Nanoscale Architectures, distinguished researcher Michael C. Petty delivers an in-depth treatment of the electrical behavior of organic electronic devices focused on first principles. The author describes the fundamental electrical behavior of various device architectures and offers an introduction to the physical processes that play a role in the electrical conductivity of organic materials. Beginning with band theory, the text moves on to address the effects of thin film device architectures and nanostructures. The book discusses the applications to devices currently in the marketplace, like displays, as well as those under development (transistors, solar cells, and memories). Electrical Processes in Organic Thin Film Devices also describes emerging organic thin film architectures and explores the potential for single molecule electronics and biologically inspired devices. Finally, the book also includes: a detailed introduction to electronic and vibrational states in organic solids, including classical band theory, disordered semiconductors, and lattice vibrations, comprehensive explorations of electrical conductivity, including 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, like molecular crystals, charge-transfer complexes, conductive polymers, carbon nanotubes, and graphene, practical considerations of defects and nanoscale phenomena, including transport processes in low-dimensional systems, surfaces and interface states, in-depth examinations of metal contacts, including ohmic contacts, the Schottky Barrier, and metal/molecule contacts, a systematic guide to the operating principles of metal/insulator/semiconductor structures and the field effect, a set of problems (with solutions on-line) for each chapter of the book Perfect for electronics developers and researchers in both industry and academia who study and work with molecular and nanoscale electronics. Electrical Processes in Organic Thin Film Devices also deserves a place in the libraries of undergraduate and postgraduate students in courses on molecular electronics, organic electronics, and plastic electronics"-- Provided by publisher.
There are no comments on this title.