Magnetic Nanoparticle-Based Hybrid Materials

Magnetic Nanoparticle-Based Hybrid Materials
Author: Andrea Ehrmann
Publisher: Woodhead Publishing
Total Pages: 761
Release: 2021-06-23
Genre: Technology & Engineering
ISBN: 0128236892


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Magnetic Nanoparticle-Based Hybrid Materials: Fundamentals and Applications introduces the principles, properties, and emerging applications of this important materials system. The hybridization of magnetic nanoparticles with metals, metal oxides and semiconducting nanoparticles may result in superior properties. The book reviews the most relevant hybrid materials, their mechanisms and properties. Then, the book focuses on the rational design, controlled synthesis, advanced characterizations and in-depth understanding of structure-property relationships. The last part addresses the promising applications of hybrid nanomaterials in the real world such as in the environment, energy, medicine fields. Magnetic Nanoparticle-Based Hybrid Materials: Fundamentals and Applications comprehensively reviews both the theoretical and experimental approaches used to rapidly advance nanomaterials that could result in new technologies that impact day-to-day life and society in key areas such as health and the environment. It is suitable for researchers and practitioners who are materials scientists and engineers, chemists or physicists in academia and R&D. Provides in-depth information on the basic principles of magnetic nanoparticles-based hybrid materials such as synthesis, characterization, properties, and magnon interactions Discusses the most relevant hybrid materials systems including integration of metals, metal oxides, polymers, carbon and more Addresses the emerging applications in medicine, the environment, energy, sensing, and computing enabled by magnetic nanoparticles-based hybrid materials

Magnetic Hybrid-Materials

Magnetic Hybrid-Materials
Author: Stefan Odenbach
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 1172
Release: 2021-10-25
Genre: Science
ISBN: 3110568837


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Externally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. This monograph delivers the latest insights into multi-scale modelling, experimental characterization, manufacturing and application of those magnetic hybrid materials.

Functional Hybrid Materials

Functional Hybrid Materials
Author: Pedro Gómez-Romero
Publisher: John Wiley & Sons
Total Pages: 434
Release: 2006-03-06
Genre: Technology & Engineering
ISBN: 3527605193


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Functional Hybrid Materials consist of both organic and inorganic components, assembled for the purpose of generating desirable properties and functionalities. The aim is twofold: to bring out or enhance advantageous chemical, electrochemical, magnetic or electronic characteristics and at the same time to reduce or wholly suppress undesirable properties or effects. Another target is the creation of entirely new material behavior. The vast number of hybrid material components available has opened up a wide and diversified field of fascinating research. In this book, a team of highly renowned experts gives an in-depth overview, illustrating the superiority of well-designed hybrid materials and their potential applications.

Polymer Hybrid Materials and Nanocomposites

Polymer Hybrid Materials and Nanocomposites
Author: Tawfik Abdo Saleh
Publisher: William Andrew
Total Pages: 354
Release: 2021-08-28
Genre: Technology & Engineering
ISBN: 0128132957


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Polymer Hybrid Materials and Composites: Fundamentals and Applications presents an introduction to the principles behind polymeric hybrid materials, providing both theoretical and practical information on the synthesis and application of these materials. It documents the latest innovations, ranging from materials development and characterization of properties, to applications. Sections cover the route from laboratory to industry, providing practical, actionable guidance to assist the scaling up process for applications in areas including energy technology, solar cells, water purification, medical devices, optical and electrical devices, and more. It is an essential introduction to the emerging technologies that are made possible by these advanced materials. Documents the latest innovations in the technology, thus enabling new applications Provides significant and detailed information on the engineering of hybrid materials for a wide range of areas, including energy, medical, and electronics, among others

Hybrid Nanocomposites for Nanotechnology

Hybrid Nanocomposites for Nanotechnology
Author: Lhadi Merhari
Publisher: Springer Science & Business Media
Total Pages: 840
Release: 2009-03-03
Genre: Technology & Engineering
ISBN: 0387304282


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This book covers the latest advances in polymer-inorganic nanocomposites, with particular focus on high-added-value applications in fields including electronics, optics, magnetism and biotechnology. The unique focus of this book is on electronic, optical, magnetic and biomedical applications of hybrid nanocomposites. Coverage includes: Synthesis methods and issues and production scale-up; Characterization methods; Electronic applications; Optical applications and Photonics; Magnetic applications; and Biomedical applications. The book offers readers a solid grasp of the state of the art, and of current challenges in non-traditional applications of hybrid nanocomposites.

Nanomaterials for Magnetic and Optical Hyperthermia Applications

Nanomaterials for Magnetic and Optical Hyperthermia Applications
Author: Raluca Maria Fratila
Publisher: Elsevier
Total Pages: 384
Release: 2018-11-30
Genre: Science
ISBN: 0128139293


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Nanomaterials for Magnetic and Optical Hyperthermia Applications focuses on the design, fabrication and characterization of nanomaterials (magnetic, gold and hybrid magnetic-gold nanoparticles) for in vitro and in vivo hyperthermia applications, both as standalone and adjuvant therapy in combination with chemotherapy. The book explores the potential for more effective cancer therapy solutions through the synergistic use of nanostructured materials as magnetic and optical hyperthermia agents and targeted drug delivery vehicles, while also discussing the challenges related to their toxicity, regulatory and translational aspects. In particular, the book focuses on the design, synthesis, biofunctionalization and characterization of nanomaterials employed for magnetic and optical hyperthermia. This book will be an important reference resource for scientists working in the areas of biomaterials and biomedicine seeking to learn about the potential of nanomaterials to provide hyperthermia solutions. Explores the design of efficient nanomaterials for hyperthermia applications, allowing readers to make informed materials selection decisions Discusses the biofunctionalization of a range of nanomaterials and their interaction with living systems Provides an overview of the current clinical applications of nanomaterials in hyperthermia treatment

Magnetism and Magnetic Materials

Magnetism and Magnetic Materials
Author: J. M. D. Coey
Publisher: Cambridge University Press
Total Pages: 632
Release: 2010-03-25
Genre: Science
ISBN: 0521816149


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An essential textbook for graduate courses on magnetism and an important source of practical reference data.

Modification, Assembly and Characterization of Biological Evolved Electronic and Magnetic Hybrid Materials

Modification, Assembly and Characterization of Biological Evolved Electronic and Magnetic Hybrid Materials
Author:
Publisher:
Total Pages: 14
Release: 2003
Genre:
ISBN:


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The research reported include the transitioning of previous work developed with semiconductor materials to new magnetic materials that may potentially lead to the development of magnetic storage devices with higher storage capabilities and other such devices. We have successfully grown and optimized the process of synthesizing single crystal annealed wires of ZnS materials as well as CoPt wires grown on an engineered viral template. The first known synthesis of SmCo5 nanoparticles was achieved and conditions were further optimized for the synthesis and characterization of such materials. Additionally, viral screening of SmCo5, FePt and CoPt was performed and the identification of specific binding peptides was achieved. Growth of these magnetic materials on both specific viral-bound and synthetic peptides was extended and further optimized. Ferromagnetic properties of such materials grown via viral templates are just now being explored, as are changes in synthetic conditions for optimal growth. Finally, further genetic engineering of the viral templates is underway, with successful formation of viral ring structures. These structures will continue to be altered and engineered for the directed synthesis of magnetic and electronic materials, potentially evolving into the next generation of memory cells, magnetic films and self-assembling rings and tubes that act as giant dipoles.