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Onoyivwe Monday Ama - Modified Nanomaterials for Environmental Applications: Electrochemical Synthesis, Characterization, and Properties

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Onoyivwe Monday Ama Modified Nanomaterials for Environmental Applications: Electrochemical Synthesis, Characterization, and Properties

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This book focuses on the electrochemical and nanostructural properties of new photoanode/electrolyte combinations used in the development of novel surface-modified nanomaterials for environmental applications. As water treatment is rapidly becoming a global challenge due to the increasing complexity and number of the various pollutants present, the book explores fundamental issues relating to environmental applications of nanomaterials. It addresses relevant topics ranging from electrochemical synthesis and characterization, to applications of photoanodes in corrosion prevention and biosensors for wastewater treatment. Featuring up-to-date experimental results on nanomaterials for detection of pharmaceuticals and heavy metals in wastewater, this contributed volume is useful to electrochemical researchers, materials scientists, and chemical and civil engineers interested in advanced photoelectrochemical research for environmental applications.

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Book cover of Environmental Applications of Nanomaterials Engineering - photo 1
Book cover of Environmental Applications of Nanomaterials
Engineering Materials

This series provides topical information on innovative, structural and functional materials and composites with applications in optical, electrical, mechanical, civil, aeronautical, medical, bio- and nano-engineering. The individual volumes are complete, comprehensive monographs covering the structure, properties, manufacturing process and applications of these materials. This multidisciplinary series is devoted to professionals, students and all those interested in the latest developments in the Materials Science field, that look for a carefully selected collection of high quality review articles on their respective field of expertise.

Indexed at Compendex (2021)

More information about this series at http://www.springer.com/series/4288

Editor
Annelise Kopp Alves
Environmental Applications of Nanomaterials
1st ed. 2022
Logo of the publisher Editor Annelise Kopp Alves Escola de Engenharia - photo 2
Logo of the publisher
Editor
Annelise Kopp Alves
Escola de Engenharia, Universidade Federal do Rio Grande do Sul, Porto Alegre, Rio Grande do Sul, Brazil
ISSN 1612-1317 e-ISSN 1868-1212
Engineering Materials
ISBN 978-3-030-86821-5 e-ISBN 978-3-030-86822-2
https://doi.org/10.1007/978-3-030-86822-2
The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerland AG 2022
This work is subject to copyright. All rights are solely and exclusively licensed by the Publisher, whether the whole or part of the material is concerned, specifically the rights of translation, reprinting, reuse of illustrations, recitation, broadcasting, reproduction on microfilms or in any other physical way, and transmission or information storage and retrieval, electronic adaptation, computer software, or by similar or dissimilar methodology now known or hereafter developed.
The use of general descriptive names, registered names, trademarks, service marks, etc. in this publication does not imply, even in the absence of a specific statement, that such names are exempt from the relevant protective laws and regulations and therefore free for general use.
The publisher, the authors and the editors are safe to assume that the advice and information in this book are believed to be true and accurate at the date of publication. Neither the publisher nor the authors or the editors give a warranty, expressed or implied, with respect to the material contained herein or for any errors or omissions that may have been made. The publisher remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

This Springer imprint is published by the registered company Springer Nature Switzerland AG

The registered company address is: Gewerbestrasse 11, 6330 Cham, Switzerland

Preface

This book contains an overview of synthesis, characterization, and applications of nanomaterials specially focused on the environmental context. Based on an extensive state-of-the-art literature survey and the results obtained by our research group during the past years, this book presents novel techniques and special applications of classical and modern nanomaterials.

This book is aimed at students, researchers, and engineers who seek general scientific knowledge about nanomaterials with an application-oriented environmental research topic.

The following chapters present the general aspects of synthesis and characterization of different nanomaterials applied to environmental research: spinel cobalt ferrites (Chapter ).

Annelise Kopp Alves
Porto Alegre, Brazil July 2021
Contents
Luis Eduardo Caldeira
Allan Ramone de Araujo Scharnberg and Fabrcio Ravanello
Luana Ges Soares and Annelise Kopp Alves
Claudir Gabriel Kaufmann Jr , Rubia Young Sun Zampiva , Marco Rossi and Annelise Kopp Alves
Carol Sippel , Waleska Campos Guaglianoni and Carlos Prez Bergmann
Mrcia Cristina dos Santos , Tania Maria Basegio , Lus Antnio da Cruz Tarelho and Carlos Prez Bergmann
Tailane Hauschild , Lus Antnio da Cruz Tarelho , Carlos Prez Bergmann and Tania Maria Basegio
Thays de Oliveira Guidolin , Maria Alice Prado Cechinel and Sabrina Arcaro
Joo Vctor Pereira Abdalla , Adriane de Assis Lawisch Rodrguez and Annelise Kopp Alves
Maria Luisa Puga , Carla Schwengber ten Caten and Carlos Prez Bergmann
Gustavo da Rosa Cunha , Waleska Campos Guaglianoni and Carlos Prez Bergmann
Tania Maria Basegio , Ana Paula Garcia and Carlos Prez Bergmann
Gisele Ins Selli , Anne Esther Targino Bonatto , Fernando Targino Bonatto , Michel Jose Anzanello and Carlos Prez Bergmann
Anne Esther Targino Bonatto , Gisele Ins Selli , Pedro Tonom Martin and Fernando Targino Bonatto
The Author(s), under exclusive license to Springer Nature Switzerland AG 2022
A. Kopp Alves (ed.) Environmental Applications of Nanomaterials Engineering Materials https://doi.org/10.1007/978-3-030-86822-2_1
Synthesis, Properties, and Applications of Spinel Cobalt Ferrites
Luis Eduardo Caldeira
(1)
Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil
Abstract

Materials composed of metal oxide nanoparticles have been the subject of much interest due to their unique properties. Among them, spinel cobalt ferrite (CoFe2O4) stands out, a well-known magnetic material with excellent structural and magnetic properties. However, despite the efforts, there is still much uncertainty regarding the effects of different synthesis methods and the most diverse parameters on the properties of cobalt ferrite nanoparticles (CFNPs). This chapter presents the essential aspects of these materials. The main synthesis methods are described. Furthermore, the structural and magnetic properties are detailed. Finally, an overview of the wide range of applications of CFNPs is presented, ranging from the industrial area, both in traditional fields and in new technologies, to employment in biomedicine.

Keywords
Nanoparticles Spinel Cobalt ferrite CoFe2O4
Abbreviation
CFNPs

cobalt ferrite nanoparticles

Introduction

Ferrites are non-metallic and magnetic materials widely studied today. They are considered ancient materials due to their applications [].

Magnetiteiron oxide II and III or Fe3O4a non-metallic solid found in nature, is a ferrite that exhibits magnetic behavior. This mineral is the oldest magnetic material known to our civilization, possibly used before iron []. Centuries later, the first primary technical application of magnetite occurred in the manufacture of compasses. From that period to the present day, several scientific advances in discovering similar materials in nature. Thus, there was an outbreak of ferrite production of synthetic form aimed at maximizing the physical and magnetic properties.

Ferrites are classified as ceramic materials. They have dark gray or black coloringusually in powder, thin-film, or solid pressed, which is very hard and brittle []. Therefore, the correct selection of the synthesis of ferrites and the cation to be incorporated, be it divalent or trivalent, is essential for obtaining ferrites with excellent final properties.

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