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Materials for Electronic, Magnetic, and Spintronic Technologies

Characterization and Applications from Energy Storage to Disease Detection

Anu Singh (Hrsg.), Anju Mishra (Hrsg.), Virat Dixit (Hrsg.), Divya Somvanshi (Hrsg.), Amodini Mishra (Hrsg.)

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ca. 181,89
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Springer Nature Switzerland img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Sonstiges

Beschreibung

This book consolidates the collective contributions of various authors, presenting a diverse array of materials for systematic property assessment and their subsequent application in electronic, magnetic, and spintronic technologies. Encompassing pure and modified polymers, metals, and semiconductors, the book elucidates the magnetic, photocatalytic, thermal, electrochemical, and other salient characteristics inherent in these materials.

Delving into a broad spectrum of applications such as energy storage, environmental remediation (water purification), and biomedical (drug administration), the book carefully examines these materials in the context of their distinctive attributes. By elucidating the correlation between a material's functionality and its physical properties, this work offers a lucid and accessible presentation that facilitates an understanding of how these materials can be judiciously employed for specific purposes.

Designed for researchers, graduate students, educators, engineers, industry researchers, and other informed members of the public, the comprehensive coverage of this book renders it an indispensable tool in the realm of materials science and technology. Through its meticulous exploration of various materials and their applications, this work stands as a valuable resource for those seeking a profound understanding of the intricate interplay between material properties and their functionalities.

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Schlagwörter

Dynamic Compression Studies, Topological Spin Textures, Titanium Dioxide Photocatalyst, Heterostructures for Energy Storage, Gas Sensing Nanostructures, Raman Spectroscopy Applications, Skyrmion Stabilization Techniques, Nanostructure Materials Ion Irradiation, Glassy Materials Kinetics, Thermal Spike Model Explanation, Self-Organization in Thin Films, 1D, 2D, 3D Material Types, Dielectric Materials Application, Magnetic Nanoparticles in Cancer