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E-raamat: Magnetic Nanoparticles: Materials Engineering, Properties and Applications

Edited by (Universidad Publica De Navarra, Spain), Edited by (Catalan Institute of Nanoscience and Nanotechnology (ICN2), Spain)
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The possible uses of nanotechnology span many fields from health to the environment and energy. As a result there is a wealth of scientific nanoscience research taking place all over the world. When there is so much information available on the topic, it can be difficult to get a complete overview of the latest developments. The Nanoscience and Nanotechnology Series provides a comprehensive resource of books covering key topics such as the synthesis, characterisation, performance and properties of nanostructured materials and technologies and their applications. With contributions from leading experts in nanoscale research, the books are suitable for graduate students and above in chemistry, physics, biology, materials science, engineering and medicine wanting to know more about nanoscience.

The Nanoscience and Nanotechnology Series provides a comprehensive resource of books covering key topics such as the synthesis, characterisation, performance and properties of nanostructured materials and technologies and their applications.
Functionality of Surfaced-modified Magnetite Nanoparticles with Controlled Sizes and Shapes;Synthetic Strategies to Improve the Magnetic Properties of Exchange Coupled Nano-heterostructures;Magnetically Contrasted Nanoconsolidates: How Spark Plasma Sintering (SPS) May Produce E-biased Solids Starting from Nanoparticles;Magnetic Micro- and Nano-disks: a Bridge Between Thin Films and Nanoparticles;Magneto-optics and Magnetoplasmonics in Nanomaterials;Magnetic Anisotropy and Exchange Bias in Size-distributed Ultrasmall Nanoparticles Systems;Characterisation of Magnetic Nanoparticles for Magnetic Hyperthermia;Electron Magnetic Resonance of Magnetic Nanoparticles;Determining the Magnetic Anisotropy at the Nanoscale by Means of X-ray Magnetic-Sensitive and Element-selective Microscopy Methods;Ultra-sensitive Detection of Magnetic Nanoparticles by Giant Magnetoimpedance Effect;Field-particle Interaction: A Key Lever for Modern Applications of Magnetic Nanoparticles;Hybrid Inorganic Magnetic-based Nanostructures: Towards Multitasking Nanoplatforms;Antiviral Activity of Iron Oxide and Iron Oxyhydroxide Nanoparticles with a Focus on Respiratory Influenza and Coronavirus Infections;Integration of Magnetic Nanoparticles into 2D and 3D Printed Nano/Microstructures;Applications of Magnetic Nanoparticles in Diamond Quantum Sensing