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Single-molecule magnets

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  • 456 pages
  • 16 hours of reading

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This book provides a concise overview of the synthesis and characterization of single molecule magnets (SMMs), exploring molecular magnetism as a promising alternative to conventional solid-state magnetism for ultrahigh-density memory materials with fast processing speeds. SMMs are highlighted for their intrinsic magnetization properties and potential applications in molecular spintronic devices. The text begins with a general introduction to SMMs, offering insights into the field's evolution and future directions. Subsequent chapters delve into current synthetic methods for SMMs, their magnetic properties, and characterization techniques, including high-field electron paramagnetic resonance, paramagnetic nuclear magnetic resonance, and magnetic circular dichroism. The book concludes with a discussion on radical-bridged SMMs, which show promise as building blocks for high-density memory applications. This work addresses a rapidly growing area in inorganic chemistry and materials science, providing a solid foundation for both researchers and newcomers. It will appeal to inorganic chemists, materials scientists, molecular physicists, and electronics engineers interested in the advancements within this dynamic field.

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Single-molecule magnets, Małgorzata Hołyńska

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Released
2019
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(Hardcover)
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