Mazumder M. Ferroic Materials-Based Technologies 2024
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Mazumder M. Ferroic Materials-Based Technologies 2024
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Textbook in PDF format
The book addresses the prospective, relevant, and original research developments in the ferroelectric, magnetic, and multiferroic fields. Ferroic materials have sparked widespread attention because they represent a broad spectrum of elementary physics and are employed in a plethora of fields, including flexible memory, enormous energy harvesting/storage, spintronic functionalities, spin caloritronics, and a large range of other multi-functional devices.
Preface
Ferroic Materials: From Past to Present
An Overview of Ferroic Materials
Future Perspectives of Ferroic/Multiferroic Materials
Basic Principles and Measurement Techniques of Electrocaloric Effect in Ferroelectric Materials
Basic Principles and Measurement Techniques of Electrocaloric Effect in Ferroelectric Materials
Ferroelectric/Ferroelastoelectric Materials: Preparation, Improvement, and Characterizations
Elastocaloric Effect in Ferroelectric Materials
Effective Flexomagnetic/Flexoelectric Sensitivity in Ferroics/Nanosized Ferroic Materials
Advancements in Ferroic Thin Films, Multilayers, and Heterostructures
Physics of Multiferroic Materials
Overview of Comparison Between Primary Ferroic Crystals with Secondary Ferroic Crystals
Robust Domain Boundary Engineering of Ferroic and Multiferroic Materials
Magnetoelectric, Dielectric, and Optical Characteristics of Ferroelectric and Antiferroelectric Materials
Ferroic Characteristics of Metal-Halide Perovskites