Semiconductors, Dielectrics, and Metals for Nanoelectronics 15

Semiconductors, Dielectrics, and Metals for Nanoelectronics 15 PDF Author: D. Misra
Publisher: ECS Transactions
ISBN: 9781623324704
Category :
Languages : en
Pages : 411

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 15

Semiconductors, Dielectrics, and Metals for Nanoelectronics 15 PDF Author: D. Misra
Publisher: ECS Transactions
ISBN: 9781623324704
Category :
Languages : en
Pages : 411

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 15: In Memory of Samares Kar

Semiconductors, Dielectrics, and Metals for Nanoelectronics 15: In Memory of Samares Kar PDF Author: D. Misra
Publisher: The Electrochemical Society
ISBN: 1607688182
Category :
Languages : en
Pages : 411

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 16

Semiconductors, Dielectrics, and Metals for Nanoelectronics 16 PDF Author: D. Misra
Publisher: The Electrochemical Society
ISBN: 1607688468
Category : Science
Languages : en
Pages : 93

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 12

Semiconductors, Dielectrics, and Metals for Nanoelectronics 12 PDF Author: S. Kar
Publisher: The Electrochemical Society
ISBN: 1607685450
Category :
Languages : en
Pages : 203

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 13

Semiconductors, Dielectrics, and Metals for Nanoelectronics 13 PDF Author: S. Kar
Publisher: The Electrochemical Society
ISBN: 1607686708
Category :
Languages : en
Pages : 386

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 11

Semiconductors, Dielectrics, and Metals for Nanoelectronics 11 PDF Author: Electrochemical Society
Publisher:
ISBN: 9781623320980
Category :
Languages : en
Pages : 394

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Semiconductors, Dielectrics, and Metals for Nanoelectronics 13

Semiconductors, Dielectrics, and Metals for Nanoelectronics 13 PDF Author: S. Kar
Publisher:
ISBN: 9781623323127
Category :
Languages : en
Pages :

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Chalcogenide Photovoltaics

Chalcogenide Photovoltaics PDF Author: Roland Scheer
Publisher: John Wiley & Sons
ISBN: 3527633723
Category : Technology & Engineering
Languages : en
Pages : 398

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Book Description
This first comprehensive description of the most important material properties and device aspects closes the gap between general books on solar cells and journal articles on chalcogenide-based photovoltaics. Written by two very renowned authors with years of practical experience in the field, the book covers II-VI and I-III-VI2 materials as well as energy conversion at heterojunctions. It also discusses the latest semiconductor heterojunction models and presents modern analysis concepts. Thin film technology is explained with an emphasis on current and future techniques for mass production, and the book closes with a compendium of failure analysis in photovoltaic thin film modules. With its overview of the semiconductor physics and technology needed, this practical book is ideal for students, researchers, and manufacturers, as well as for the growing number of engineers and researchers working in companies and institutes on chalcogenide photovoltaics.

Organic Thin Film Transistor Integration

Organic Thin Film Transistor Integration PDF Author: Flora Li
Publisher: John Wiley & Sons
ISBN: 3527634452
Category : Technology & Engineering
Languages : en
Pages : 258

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Book Description
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.

Internal Photoemission Spectroscopy

Internal Photoemission Spectroscopy PDF Author: Valeri V. Afanas'ev
Publisher: Elsevier
ISBN: 0080999301
Category : Science
Languages : en
Pages : 404

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Book Description
The second edition of Internal Photoemission Spectroscopy thoroughly updates this vital, practical guide to internal photoemission (IPE) phenomena and measurements. The book's discussion of fundamental physical and technical aspects of IPE spectroscopic applications is supplemented by an extended overview of recent experimental results in swiftly advancing research fields. These include the development of insulating materials for advanced SiMOS technology, metal gate materials, development of heterostructures based on high-mobility semiconductors, and more. Recent results concerning the band structure of important interfaces in novel materials are covered as well. Internal photoemission involves the physics of charge carrier photoemission from one solid to another, and different spectroscopic applications of this phenomenon to solid state heterojunctions. This technique complements conventional external photoemission spectroscopy by analyzing interfaces separated from the sample surface by a layer of a different solid or liquid. Internal photoemission provides the most straightforward, reliable information regarding the energy spectrum of electron states at interfaces. At the same time, the method enables the analysis of heterostructures relevant to modern micro- and nano-electronic devices as well as new materials involved in their design and fabrication. First complete model description of the internal photoemission phenomena Overview of the most reliable energy barrier determination procedures and trap characterization methods Overview of the most recent results on band structure of high-permittivity insulating materials and their interfaces with semiconductors and metals