Colloidal Metal Oxide Nanoparticles

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Colloidal Metal Oxide Nanoparticles: Synthesis, Characterization and Applications is a one-stop reference for anyone with an interest in the fundamentals, synthesis and applications of this interesting materials system. The book presents a simple, effective and detailed discussion on colloidal metal oxide nanoparticles. It begins with a general introduction of colloidal metal oxide nanoparticles, then delves into the most relevant synthesis pathways, stabilization procedures, and synthesis and characterization techniques. Final sections discuss promising applications, including bioimaging, biosensing, diagnostic, and energy applications—i.e., solar cells, supercapacitors and environment applications—i.e., the treatment of contaminated soil, water purification and waste remediation. - Provides the most comprehensive resource on the topic, from fundamentals, to synthesis and characterization techniques - Presents key applications, including biomedical, energy, electronic and environmental - Discusses the most relevant techniques for synthesis, patterning and characterization

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Genre : Technology & Engineering
Author :
Publisher : Elsevier
Release : 2019-10-16
File : 612 Pages
ISBN-13 : 9780128133583


Metal Oxide Nanoparticles

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Ein umfassendes Referenzwerk für Chemiker und Industriefachleute zum Thema Nanopartikel Nanopartikel aus Metalloxid sind ein wesentlicher Bestandteil zahlreicher natürlicher und technologischer Prozesse ? von der Mineralumwandlung bis zur Elektronik. Darüber hinaus kommen Metalloxid-Nanopartikel in Pulverform im Maschinenbau, in der Elektronik und der Energietechnik zum Einsatz. Das Werk Metal Oxide Nanoparticles: Formation, Functional Properties and Interfaces stellt die wichtigsten Synthese- und Formulierungsansätze bei der Nutzung von Metalloxid-Nanopartikeln als Funktionsmaterialien vor. Es werden die üblichen Verarbeitungswege erklärt und die physikalischen und chemischen Eigenschaften der Partikel mithilfe von umfassenden und ergänzenden Charakterisierungsmethoden bewertet. Dieses Werk kann als Einführung in die Formulierung von Nanopartikeln, ihre Grenzflächenchemie und ihre funktionellen Eigenschaften im Nanobereich genutzt werden. Darüber hinaus dient es zum vertiefenden Verständnis, denn das Buch enthält detaillierte Angaben zu fortschrittlichen Methoden bei der physikalischen, chemischen, Oberflächen- und Grenzflächencharakterisierung von Metalloxid-Nanopartikeln in Pulvern und Dispersionen. *Erläuterung der Anwendung von Metalloxid-Nanopartikeln und der wirtschaftlichen Auswirkungen *Betrachtung der Partikelsynthese, einschließlich der Grundsätze ausgewählter Bottom-up-Strategien *Untersuchung der Formulierung von Nanopartikeln mit einer Auswahl von Verarbeitungs- und Anwendungswegen *Diskussion der Bedeutung von Partikeloberflächen und -grenzflächen für Strukturbildung, Stabilität und funktionelle Materialeigenschaften *Betrachtung der Charakterisierung von Metalloxid-Nanopartikeln auf verschiedenen Längenskalen In diesem Buch finden Forscher im akademischen Bereich, Chemiker in der Industrie und Doktoranden wichtige Erkenntnisse über die Synthese, Eigenschaften und Anwendungen von Metalloxid-Nanopartikeln.

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Genre : Technology & Engineering
Author : Oliver Diwald
Publisher : John Wiley & Sons
Release : 2021-09-10
File : 903 Pages
ISBN-13 : 9781119436768


Metal Oxide Nanostructures Chemistry

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This much-anticipated new edition of Jolivet's work builds on the edition published in 2000. It is entirely updated, restructured and increased in content. The book focuses on the formation by techniques of green chemistry of oxide nanoparticles having a technological interest. Jolivet introduces the most recent concepts and modelings such as dynamics of particle growth, ordered aggregation, ionic and electronic interfacial transfers. A general view of the metal hydroxides, oxy-hydroxides and oxides through the periodic table is given, highlighting the influence of the synthesis conditions on crystalline structure, size and morphology of nanoparticles. The formation of aluminum, iron, titanium, manganese and zirconium oxides are specifically studied. These nanomaterials have a special interest in many technological fields such as ceramic powders, catalysis and photocatalysis, colored pigments, polymers, cosmetics and also in some biological or environmental phenomena.

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Genre : Science
Author : Jean-Pierre Jolivet
Publisher : Oxford University Press
Release : 2019-01-04
File : 400 Pages
ISBN-13 : 9780190928124


Metal Oxide Nanoparticles In Organic Solvents

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Metal Oxide Nanoparticles in Organic Solvents discusses recent advances in the chemistry involved for the controlled synthesis and assembly of metal oxide nanoparticles, the characterizations required by such nanoobjects, and their size and shape depending properties. In the last few years, a valuable alternative to the well-known aqueous sol-gel processes was developed in the form of nonaqueous solution routes. Metal Oxide Nanoparticles in Organic Solvents reviews and compares surfactant- and solvent-controlled routes, as well as providing an overview of techniques for the characterization of metal oxide nanoparticles, crystallization pathways, the physical properties of metal oxide nanoparticles, their applications in diverse fields of technology, and their assembly into larger nano- and mesostructures. Researchers and postgraduates in the fields of nanomaterials and sol-gel chemistry will appreciate this book’s informative approach to chemical formation mechanisms in relation to metal oxides.

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Genre : Science
Author : Markus Niederberger
Publisher : Springer Science & Business Media
Release : 2009-09-17
File : 223 Pages
ISBN-13 : 9781848826717


Crystallization And Growth Of Colloidal Nanocrystals

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Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and chemical properties, the development of new synthetic routes to nanocrystals with controlled composition and morphology is a key objective of the nanomaterials community. This objective is dependent on control of the nucleation and growth mechanisms that occur during the synthetic process, which in turn requires a fundamental understanding of both classical nucleation and growth and non-classical growth processes in nanostructured materials. Recently, a novel growth process called Oriented Attachment (OA) was identified which appears to be a fundamental mechanism during the development of nanoscale materials. OA is a special case of aggregation that provides an important route by which nanocrystals grow, defects are formed, and unique—often symmetry-defying—crystal morphologies can be produced. This growth mechanism involves reversible self-assembly of primary nanocrystals followed by reorientation of the assembled nanoparticles to achieve structural accord at the particle-particle interface, the removal of adsorbates and solvent molecules, and, finally, the irreversible formation of chemical bonds to produce new single crystals, twins, and intergrowths. Crystallization and Growth of Colloidal Nanocrystals provides a current understanding of the mechanisms related to nucleation and growth for use in controlling nanocrystal morphology and physical-chemical properties, and is essential reading for any chemist or materials scientist with an interest in using nanocrystals as building blocks for larger structures. This book provides a compendium for the expert reader as well as an excellent introduction for advanced undergraduate and graduate students seeking a gateway into this dynamic area of research.

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Genre : Science
Author : Edson Roberto Leite
Publisher : Springer Science & Business Media
Release : 2011-11-17
File : 101 Pages
ISBN-13 : 9781461413080


Colloidal Synthesis And Characterizations Of Metal Metal Oxide And Semiconductor Nanoparticles By Inductive Heating Method

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The goal of this thesis is to develop a faster, safer, and industrial-level scale-up methodology for the synthesis of diverse nanomaterials applying the inductive heating methodology. This thesis discusses the size control magnetic inductive heating synthesis of iron, iron- oxide, manganese, manganese/iron alloys, and germanium nanoparticles (NPs) in different chapters. Background in the magnetic heating methodology and how it can be used for nanomaterial synthesis is discussed in Chapter 2. Chapter 3 describes the synthesis and characterization of colloidal insulating iron-oxide NPs. Fe2O3 and Fe3O4 NPs were prepared by inductive heating. Their morphological and magnetic properties were studied in detail. The effect of different solvents and heating times on the size of NPs was explored. Furthermore, this chapter discusses how the inductive heating methodology can be utilized for the use of solid precursors to prepare monodispersed, phase pure y- Fe2O3 NPs. Chapter 4 is aimed to describe the synthesis of air-stable metallic iron NPs with their size tuning. TEM, HRTEM, PXRD, and elemental analysis were carried out to confirm the formation of iron NPs and their particle size distributions. SQUID was used to investigate the magnetic properties of thus synthesized NPs. Chapter 5 focuses on achieving greater control over the size distribution in the solution synthesis of semiconducting germanium NPs. The effect of concentration of precursor and heating time was explored. This chapter will also discuss the possible defects present in as-synthesized NPs. Various spectroscopic characterizations such as transient absorption and UV-Vis-NIR were performed to identify the quality of crystals. Finally, Chapter 6 describes the use of the inductive heating methodology for the synthesis of manganese oxide and iron-manganese oxide alloy nanoparticles, a potential material for fossil-free ammonia synthesis by step catalysis. The one-pot inductive heating-assisted method promises a scalable and low-cost production of highly crystalline NPs by overcoming the traditional disadvantages of long reaction times, high temperature and pressure, complicated precursor preparation, and exhaustive post-synthetic purification steps.

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Genre :
Author : Pratikshya Sharma
Publisher :
Release : 2021
File : 0 Pages
ISBN-13 : OCLC:1336605725


Influence Of Natural Organic Matter Nom And Synthetic Polyelectrolytes On Colloidal Behavior Of Metal Oxide Nanoparticles

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Genre : Humus
Author : Saikat Ghosh
Publisher :
Release : 2010
File : 114 Pages
ISBN-13 : OCLC:691208788


Noble Metal Metal Oxide Hybrid Nanoparticles

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Noble Metal-Metal Oxide Hybrid Nanoparticles: Fundamentals and Applications sets out concepts and emerging applications of hybrid nanoparticles in biomedicine, antibacterial, energy storage and electronics. The hybridization of noble metals (Gold, Silver, Palladium and Platinum) with metal-oxide nanoparticles exhibits superior features when compared to individual nanoparticles. In some cases, metal oxides act as semiconductors, such as nano zinc oxide or titanium oxide nanoparticles, where their hybridization with silver nanoparticles, enhanced significantly their photocatalytic efficiency. The book highlights how such nanomaterials are used for practical applications. - Examines the properties of metal-metal oxide hybrid nanoparticles that make them so adaptable - Explores the mechanisms by which nanoparticles interact with each other, showing how these can be exploited for practical applications - Shows how metal oxide hybrid nanomaterials are used in a range of industry sectors, including energy, the environment and healthcare

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Genre : Technology & Engineering
Author : Satyabrata Mohapatra
Publisher : Elsevier
Release : 2018-10-11
File : 675 Pages
ISBN-13 : 9780128141359


Metal Oxide Nanomaterials For Chemical Sensors

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This book presents a state-of-the-art summary and critical analysis of work recently performed in leading research laboratories around the world on the implementation of metal oxide nanomaterial research methodologies for the discovery and optimization of new sensor materials and sensing systems. The book provides a detailed description and analysis of (i) metal oxide nanomaterial sensing principles, (ii) advances in metal oxide nanomaterial synthesis/deposition methods, including colloidal, emulsification, and vapor processing techniques, (iii) analysis of techniques utilized for the development of low temperature metal oxide nanomaterial sensors, thus enabling a broader impact into sensor applications, (iv) advances, challenges and insights gained from the in situ/ex situ analysis of reaction mechanisms, and (v) technical development and integration challenges in the fabrication of sensing arrays and devices.

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Genre : Science
Author : Michael A. Carpenter
Publisher : Springer Science & Business Media
Release : 2012-11-09
File : 559 Pages
ISBN-13 : 9781461453956


Iron Oxide Nanoparticles For Biomedical Applications

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Iron Oxide Nanoparticles for Biomedical Applications: Synthesis, Functionalization and Application begins with several chapters covering the synthesis, stabilization, physico-chemical characterization and functionalization of iron oxide nanoparticles. The second part of the book outlines the various biomedical imaging applications that currently take advantage of the magnetic properties of iron oxide nanoparticles. Brief attention is given to potential iron oxide based therapies, while the final chapter covers nanocytotoxicity, which is a key concern wherever exposure to nanomaterials might occur. This comprehensive book is an essential reference for all those academics and professionals who require thorough knowledge of recent and future developments in the role of iron oxide nanoparticles in biomedicine. - Unlocks the potential of iron oxide nanoparticles to transform diagnostic imaging techniques - Contains full coverage of new developments and recent research, making this essential reading for researchers and engineers alike - Explains the synthesis, processing and characterization of iron oxide nanoparticles with a view to their use in biomedicine

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Genre : Technology & Engineering
Author : Sophie Laurent
Publisher : Elsevier
Release : 2017-10-20
File : 336 Pages
ISBN-13 : 9780081012758