Yi / Li | Functional Materials and Electronics | E-Book | sack.de
E-Book

E-Book, Englisch, 366 Seiten

Yi / Li Functional Materials and Electronics


1. Auflage 2018
ISBN: 978-1-351-68275-6
Verlag: Taylor & Francis
Format: EPUB
Kopierschutz: 0 - No protection

E-Book, Englisch, 366 Seiten

ISBN: 978-1-351-68275-6
Verlag: Taylor & Francis
Format: EPUB
Kopierschutz: 0 - No protection



This edited book focuses on the newly developed functional materials and their applications for electronics and spintronics devices. Electronic devices have become a part of our daily modern life involving mobile phones, data storage, computers, and satellites, and there is relentless growth in microelectronics. The book covers the topic of oxide materials for electronics devices, new materials, and new properties, especially in the newly developed research areas, such as oxide magnetic semiconductors and two-dimensional electron gas.

Chapter 1 introduces the synthesis, crystalline structure, applications and properties of the atomic thin materials, metal dichalcogenide. Chapter 2 describes the synthesis and properties of two-dimensional electron gas in the interface of LaAlO3/SrTiO3. Chapter 3 introduces the multiferroics and magnetoelectric applications in bismuth ferrite. Chapter 4 discusses the resistive switching for the applications of memories. Chapter 5 discusses the applications of ZnO for sensors. Chapter 6 focuses on the introduction of oxide-based diluted magnetic semiconductors and experimental results. Chapter 7 emphasizes on the theoretical study of oxide-based diluted magnetic semiconductors.

This book is primarily for researchers in condensed matter physics and nanodevices and materials as well as those in physics, electronics engineering, and materials science.

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Autoren/Hrsg.


Weitere Infos & Material


Synthesis and Applications of 2D Transition Metal Dichalcogenides

Xiang Ding and Jiabao Yi

Two-Dimensional Electron Gas at the LaAlO3/SrTiO3 Interface

Z. Q. Liu, A. Annadi, and Ariando

Multiferroism and Magnetoelectric Applications in Bismuth Ferrite

You Lu and Junlin Wang

Recent Advances in Resistive Switching Nanocrystalline Thin Films Derived via Solution-Processed Techniques

Adnan Younis, Sean Li, Matthew Phillips, and Dewei Chu

ZnO Thin Films and Nanostructures for Acoustic Wave-Based Microfluidic and Sensing Applications

Hua-Feng Pang, J. K. Luo, and Y. Q. Fu

Diluted Magnetic Semiconducting Oxides (DMSO)

Nguyen Hoa Hong

First Principles Calculations in Exploring the Magnetism of Oxide-Based DMS

Yiren Wang and Jiabao Yi


Dr. Jiabao Yi is a Senior Lecturer in the School of Materials Science and Engineering, University of New South Wales (UNSW). Before he came to UNSW, he was a prestigious Lee Kuan Yew postdoctoral fellow at the National University of Singapore. He joined UNSW in 2011 after he was awarded a Queen Elizabeth II fellowship. He obtained his PhD degree in 2008 from the National University of Singapore, Singapore. His research areas include oxide-based diluted magnetic semiconductors, two-dimensional materials, and soft and hard magnetic materials. He has published 120 papers with citations over 4500 times.

Professor Sean Li is currently leading a research group that consists of more than 40 researchers who work in the research areas of advanced multifunctional materials at the University of New South Wales, Kensington, Australia. Their research activities have been funded by ~ $42m from the Australian Research Council, the Australian Solar Institute, the Australian Nuclear Science and Technology Organization (ANSTO), the Commonwealth Science Industrial Research Organization (CSIRO) and industries. Professor Sean Li’s laboratory is equipped with a number of unique and world-class research facilities, which is specially designed and fully geared toward the development of advanced multifunctional and energy materials with a total value of AUD$12m. It is one of the key research infrastructures at UNSW. Professor Li has published three textbooks, one edited book, 12 book chapters, and more than 325 scientific articles in international peer-reviewed journals.



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