Semiconducting Properties of Oxide Thin Films Prepared by Pulsed Laser Deposition

Semiconducting Properties of Oxide Thin Films Prepared by Pulsed Laser Deposition
Title Semiconducting Properties of Oxide Thin Films Prepared by Pulsed Laser Deposition PDF eBook
Author Ching-yee Lam
Publisher
Pages 328
Release 2005
Genre Pulsed laser deposition
ISBN

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Binary Metal Oxides Thin Films Prepared from Pulsed Laser Deposition

Binary Metal Oxides Thin Films Prepared from Pulsed Laser Deposition
Title Binary Metal Oxides Thin Films Prepared from Pulsed Laser Deposition PDF eBook
Author Cyril Robinson Azariah John Chelliah
Publisher
Pages 0
Release 2022
Genre Electronic books
ISBN

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The semiconductor industry flourished from a simple Si-based metal oxide semiconductor field effect transistor to an era of MOSFET-based smart materials. In recent decades, researchers have been replacing all the materials required for the MOSFET device. They replaced the substrate with durable materials, lightweight materials, translucent materials and so on. They have came up with the possibility of replacing dielectric silicon dioxide material with high-grade dielectric materials. Even then the channel shift in the MOSFET was the new trend in MOSFET science. From the bulk to the atomic level, transistors have been curiously researched across the globe for the use of electronic devices. This research was also inspired by the different semiconductor materials relevant to the replacement of the dielectric channel/gate. Study focuses on diverse materials such as zinc oxides (ZnO), electrochromic oxides such as molybdenum oxides (including MoO3 and MoO2) and other binary oxides using ZnO and MoO3. The primary objective of this research is to study pulsed laser deposited thin films such as ZnO, MoO3, binary oxides such as binary ZnO /MoO3, ZnO /TiO2 and ZnO/V2O5 and to analyse their IV properties for FET applications. To achieve the goal, the following working elements have been set: investigation of pulsed laser deposited thin film of metal oxides and thin film of binary metal oxide nanostructures with effects of laser repetition and deposition temperatures.

Thin Films and Heterostructures for Oxide Electronics

Thin Films and Heterostructures for Oxide Electronics
Title Thin Films and Heterostructures for Oxide Electronics PDF eBook
Author Satishchandra B. Ogale
Publisher Springer Science & Business Media
Pages 416
Release 2005-11-21
Genre Technology & Engineering
ISBN 0387260897

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Oxides form a broad subject area of research and technology development which encompasses different disciplines such as materials science, solid state chemistry, physics etc. The aim of this book is to demonstrate the interplay of these fields and to provide an introduction to the techniques and methodologies involving film growth, characterization and device processing. The literature in this field is thus fairly scattered in different research journals covering one or the other aspect of the specific activity. This situation calls for a book that will consolidate this information and thus enable a beginner as well as an expert to get an overall perspective of the field, its foundations, and its projected progress.

Growth and Characterization of Wide-gap Semiconducting Oxide and Chalcogenide Thin Films by Pulsed Laser Deposition

Growth and Characterization of Wide-gap Semiconducting Oxide and Chalcogenide Thin Films by Pulsed Laser Deposition
Title Growth and Characterization of Wide-gap Semiconducting Oxide and Chalcogenide Thin Films by Pulsed Laser Deposition PDF eBook
Author Paul F. Newhouse
Publisher
Pages 163
Release 2008
Genre Chalcogenides
ISBN 9780549913696

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The preparation and characterization of thin film oxides and chalcogenides by pulsed laser deposition (PLD) is presented. An overview of fundamental PLD concepts are presented and are followed by a description implementation and development of the PLD systems at OSU. We present the results of thin film growth of high electron mobility In2O3:W in which we have prepared films exhibiting □ > 100 cm2/Vs on vitreous SiO2 substrates. The growth of Cu3TaQ 4 (Q = S, Se) films is outlined as a two step process consisting of PLD of ceramic targets followed by ex-situ annealing in chalcogenide vapor. Also, BiCuOSe thin films have been prepared in-situ and exhibit a high hole mobility up to 4 cm2/Vs. A discussion of their electronic structure is presented which explains the nature of the low band gap energy on the basis of deep Bi 6p level at the conduction band minimum. Finally, the results of BaBiO3 thin film preparation are presented in which both polycrystalline and highly (00l) oriented samples were grown.

Advanced Nano Deposition Methods

Advanced Nano Deposition Methods
Title Advanced Nano Deposition Methods PDF eBook
Author Yuan Lin
Publisher John Wiley & Sons
Pages 328
Release 2016-08-29
Genre Technology & Engineering
ISBN 3527696458

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This concise reference summarizes the latest results in nano-structured thin films, the first to discuss both deposition methods and electronic applications in detail. Following an introduction to this rapidly developing field, the authors present a variety of organic and inorganic materials along with new deposition techniques, and conclude with an overview of applications and considerations for their technology deployment.

Magnetic Semiconducting Oxide Thin Films and Heterostructures by Pulsed Laser Deposition

Magnetic Semiconducting Oxide Thin Films and Heterostructures by Pulsed Laser Deposition
Title Magnetic Semiconducting Oxide Thin Films and Heterostructures by Pulsed Laser Deposition PDF eBook
Author Gong Wai Leung
Publisher
Pages
Release 2011
Genre
ISBN

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Oxide Semiconductors

Oxide Semiconductors
Title Oxide Semiconductors PDF eBook
Author
Publisher Academic Press
Pages 369
Release 2013-05-18
Genre Technology & Engineering
ISBN 0123965454

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Semiconductors and Semimetals has distinguished itself through the careful selection of well-known authors, editors, and contributors. Originally widely known as the "Willardson and Beer" Series, it has succeeded in publishing numerous landmark volumes and chapters. The series publishes timely, highly relevant volumes intended for long-term impact and reflecting the truly interdisciplinary nature of the field. The volumes in Semiconductors and Semimetals have been and will continue to be of great interest to physicists, chemists, materials scientists, and device engineers in academia, scientific laboratories and modern industry. - Written and edited by internationally renowned experts - Relevant to a wide readership: physicists, chemists, materials scientists, and device engineers in academia, scientific laboratories and modern industry