Electrical Monitoring of Polymerization Reactions with the Charge-Flow Transistor

Electrical Monitoring of Polymerization Reactions with the Charge-Flow Transistor
Title Electrical Monitoring of Polymerization Reactions with the Charge-Flow Transistor PDF eBook
Author S. D. Senturia
Publisher
Pages 10
Release 1984
Genre
ISBN

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The primary goal of this program was to develop a promising new technique for the electrical monitoring of polymerizations based on a device called the charge-flow transistor, and its related device, the floating-gate charge-flow transistor. The program was directed toward the development of the instrumentation capabilities of the device and toward the research use of the method for the study of selected polymer systems.

The Feasibility of Electrical Monitoring of Resin Cure with the Charge-Flow Transistor

The Feasibility of Electrical Monitoring of Resin Cure with the Charge-Flow Transistor
Title The Feasibility of Electrical Monitoring of Resin Cure with the Charge-Flow Transistor PDF eBook
Author Stephen D. Senturia
Publisher
Pages 36
Release 1979
Genre
ISBN

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A new technique for the electrical monitoring of polymerization reactions such as resin cure is described. The technique is based on the charge-flow transistor, which resembles a conventional MOSFET, but with a portion of the metal gate replaced by the resin under study. Electrical signals obtained from several resins undergoing cure are presented, along with an electrical circuit model that can account for the principal features of these signals. The dramatic change in signal shape during cure can be related to corresponding changes in both the real and imaginary parts of the dielectric constant. (Author).

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 464
Release 1995
Genre Aeronautics
ISBN

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Government Reports Announcements & Index

Government Reports Announcements & Index
Title Government Reports Announcements & Index PDF eBook
Author
Publisher
Pages 1208
Release 1984-08
Genre Science
ISBN

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Government Reports Annual Index

Government Reports Annual Index
Title Government Reports Annual Index PDF eBook
Author
Publisher
Pages 1396
Release 1992
Genre Government reports announcements & index
ISBN

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Organic Thin Film Transistor Integration

Organic Thin Film Transistor Integration
Title Organic Thin Film Transistor Integration PDF eBook
Author Flora Li
Publisher John Wiley & Sons
Pages 258
Release 2011-03-21
Genre Technology & Engineering
ISBN 3527634452

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Research on organic electronics (or plastic electronics) is driven by the need to create systems that are lightweight, unbreakable, and mechanically flexible. With the remarkable improvement in the performance of organic semiconductor materials during the past few decades, organic electronics appeal to innovative, practical, and broad-impact applications requiring large-area coverage, mechanical flexibility, low-temperature processing, and low cost. Thus, organic electronics appeal to a broad range of electronic devices and products including transistors, diodes, sensors, solar cells, lighting, displays, and electronic identification and tracking devices A number of commercial opportunities have been identified for organic thin film transistors (OTFTs), ranging from flexible displays, electronic paper, radio-frequency identification (RFID) tags, smart cards, to low-cost disposable electronic products, and more are continually being invented as the technology matures. The potential applications for "plastic electronics" are huge but several technological hurdles must be overcome. In many of these applications, transistor serves as a fundamental building block to implement the necessary electronic functionality. Hence, research in organic thin film transistors (OTFTs) or organic field effect transistors (OFETs) is eminently pertinent to the development and realization of organic electronics. This book presents a comprehensive investigation of the production and application of a variety of polymer based transistor devices and circuits. It begins with a detailed overview of Organic Thin Film Transistors (OTFTs) and discusses the various possible fabrication methods reported so far. This is followed by two major sections on the choice, optimization and implementation of the gate dielectric material to be used. Details of the effects of processing on the efficiency of the contacts are then provided. The book concludes with a chapter on the integration of such devices to produce a variety of OTFT based circuits and systems. The key objective is to examine strategies to exploit existing materials and techniques to advance OTFT technology in device performance, device manufacture, and device integration. Finally, the collective knowledge from these investigations facilitates the integration of OTFTs into organic circuits, which is expected to contribute to the development of new generation of all-organic displays for communication devices and other pertinent applications. Overall, a major outcome of this work is that it provides an economical means for organic transistor and circuit integration, by enabling the use of a well-established PECVD infrastructure, while not compromising the performance of electronics. The techniques established here are not limited to use in OTFTs only; the organic semiconductor and SiNx combination can be used in other device structures (e.g., sensors, diodes, photovoltaics). Furthermore, the approach and strategy used for interface optimization can be extended to the development of other materials systems.

Conjugated Polymers

Conjugated Polymers
Title Conjugated Polymers PDF eBook
Author John R. Reynolds
Publisher CRC Press
Pages 832
Release 2019-03-25
Genre Technology & Engineering
ISBN 1315159295

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This book covers properties, processing, and applications of conducting polymers. It discusses properties and characterization, including photophysics and transport. It then moves to processing and morphology of conducting polymers, covering such topics as printing, thermal processing, morphology evolution, conducting polymer composites, thin films