9780128223499-0128223499-Nanomagnetic Materials: Fabrication, Characterization and Application (Micro and Nano Technologies)

Nanomagnetic Materials: Fabrication, Characterization and Application (Micro and Nano Technologies)

ISBN-13: 9780128223499
ISBN-10: 0128223499
Edition: 1
Author: Akinobu Yamaguchi, Atsufumi Hirohata PhD, Bethanie Stadler
Publication date: 2021
Publisher: Elsevier
Format: Paperback 812 pages
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Book details

ISBN-13: 9780128223499
ISBN-10: 0128223499
Edition: 1
Author: Akinobu Yamaguchi, Atsufumi Hirohata PhD, Bethanie Stadler
Publication date: 2021
Publisher: Elsevier
Format: Paperback 812 pages

Summary

Nanomagnetic Materials: Fabrication, Characterization and Application (Micro and Nano Technologies) (ISBN-13: 9780128223499 and ISBN-10: 0128223499), written by authors Akinobu Yamaguchi, Atsufumi Hirohata PhD, Bethanie Stadler, was published by Elsevier in 2021. With an overall rating of 3.7 stars, it's a notable title among other Microprocessors & System Design (Hardware & DIY, Nanostructures, Physics) books. You can easily purchase or rent Nanomagnetic Materials: Fabrication, Characterization and Application (Micro and Nano Technologies) (Paperback) from BooksRun, along with many other new and used Microprocessors & System Design books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Nanomagnetic Materials: Fabrication, Characterization and Application explores recent studies of conventional nanomagnetic materials in spintronics, data storage, magnetic sensors and biomedical applications. In addition, the book also reviews novel magnetic characteristics induced in two-dimensional materials, diamonds, and those induced by the artificial formation of lattice defect and heterojunction as novel nanomagnetic materials. Nanomagnetic materials are usually based on d- and f-electron systems. They are an important solution to the demand for higher density of information storage, arising from the emergence of novel technologies required for non-volatile memory systems.

Advances in the understanding of magnetization dynamics and in the characteristics of nanoparticles or surface of nanomagnetic materials is resulting in greater expansion of applications of nanomagnetic materials, including in biotechnology, sensor devices, energy harvesting, and power generating systems. This book provides a cogent overview of the latest research on novel nanomagnetic materials, including spintronic nanomagnets, molecular nanomagnets, self-assembling magnetic nanomaterials, nanoparticles, multifunctional materials, and heterojunction-induced novel magnetism.

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