Description

Magnetite is a naturally occurring iron-oxide mineral with applications in several industries. This monograph includes five chapters that detail various aspects of magnetite. Chapter One focuses on understanding magnetite and its modifications in the context of the cancer treatment modality magnetic hyperthermia. Chapter Two examines various aspects of synthesis and characterisations of magnetic nanoparticles, surface functionalization and enzyme immobilisation with improved catalysis, stability, and reusability. Chapter Three presents data on the effect of magnetoacoustic emission and its relation to the behaviour of the domain structure of magnetites formed under various conditions. Chapter Four highlights the detection of trace levels of pesticides and drugs in different environmental samples by using magnetite-molecularly imprinted polymers. Lastly, Chapter Five discusses the methods of synthesis and typical characteristics of magnetite-based nanocomposites that can be used for different applications.

Magnetite: Properties, Occurrence and Applications

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Paperback / softback by Manuel J. Wolcott

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Magnetite is a naturally occurring iron-oxide mineral with applications in several industries. This monograph includes five chapters that detail various... Read more

    Publisher: Nova Science Publishers Inc
    Publication Date: 01/12/2021
    ISBN13: 9781685071943, 978-1685071943
    ISBN10: 1685071945

    Number of Pages: 133

    Non Fiction , Mathematics & Science , Education

    Description

    Magnetite is a naturally occurring iron-oxide mineral with applications in several industries. This monograph includes five chapters that detail various aspects of magnetite. Chapter One focuses on understanding magnetite and its modifications in the context of the cancer treatment modality magnetic hyperthermia. Chapter Two examines various aspects of synthesis and characterisations of magnetic nanoparticles, surface functionalization and enzyme immobilisation with improved catalysis, stability, and reusability. Chapter Three presents data on the effect of magnetoacoustic emission and its relation to the behaviour of the domain structure of magnetites formed under various conditions. Chapter Four highlights the detection of trace levels of pesticides and drugs in different environmental samples by using magnetite-molecularly imprinted polymers. Lastly, Chapter Five discusses the methods of synthesis and typical characteristics of magnetite-based nanocomposites that can be used for different applications.

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