Nanoscale Materials in Chemistry by Kenneth J. Klabunde
Free Download Nanoscale Materials in Chemistry by Kenneth J. Klabunde
Authors of: Nanoscale Materials in Chemistry by Kenneth J. Klabunde
Kenneth J. Klabunde
Ryan M. Richards
Table of Contents in Nanoscale Materials in Chemistry by Kenneth J. Klabunde
Preface
Contributors
1 Introduction to the Nanoworld
Kenneth J. Klabunde
2 Metals
Gunter Schmid
3 Semiconductor Nanocrystals
M. P. Pileni
4 Ceramics
Abbas Khaleel and Ryan M. Richards
5 Metal Nanoparticles: Double Layers, Optical Properties, and Electrochemistry
Paul Mulvaney
6 Magnetism
C. M. Sorensen
7 Chemical and Catalytic Aspects of Nanocrystals
Kenneth J. Klabunde and Ravichandra S. Mulukutla
8 Specific Heats and Melting Points of Nanocrystalline Materials
Olga Koper and Slawomir Winecki
9 Applications of Nanocrystals
John Parker
Index
In the insightful compilation titled “Nanoscale Materials in Chemistry” edited by Kenneth J. Klabunde, a team of accomplished contributors delves into the multifaceted realm of nanomaterials, providing an extensive overview of various aspects shaping this cutting-edge field. The preface, written by Klabunde, sets the stage for an enlightening journey through the nanoworld, while the list of contributors underscores the expertise harnessed for this exploration.
The book unfolds with a foundational chapter authored by Klabunde himself, offering readers an Introduction to the Nanoworld. This initial section serves as a gateway into the intricate domain of nanomaterials, laying the groundwork for subsequent in-depth discussions. As the narrative progresses, each chapter is dedicated to a specific class of nanomaterials, providing readers with a thorough understanding of their unique properties and applications.
Gunter Schmid delves into the realm of Metals in the second chapter, elucidating the distinctive characteristics and applications of metal-based nanomaterials. The discussion encompasses a wide spectrum, ranging from fundamental properties to advanced applications, offering readers a holistic perspective on the role of metals in the nanoworld.
In Chapter 3, M. P. Pileni explores Semiconductor Nanocrystals, unraveling the fascinating world of nanoscale semiconductors. The author delves into the synthesis, properties, and applications of semiconductor nanocrystals, shedding light on their pivotal role in the field of nanotechnology.
Ceramics take center stage in Chapter 4, where Abbas Khaleel and Ryan M. Richards dissect the unique attributes of nanoceramics. This segment provides a comprehensive analysis of ceramic nanomaterials, detailing their synthesis methods, properties, and diverse applications across various industries.
Paul Mulvaney, in Chapter 5, delves into Metal Nanoparticles, offering a profound exploration of double layers, optical properties, and electrochemistry associated with these intriguing nanomaterials. The chapter delves into the intricate interplay of metal nanoparticles with their surrounding environment, unveiling their dynamic behavior and potential applications.
Chapter 6, authored by C. M. Sorensen, explores the captivating world of Magnetism in nanomaterials. The discussion covers the fundamental principles governing magnetic nanomaterials, their unique properties, and the potential applications arising from their magnetic characteristics.
Moving forward, Kenneth J. Klabunde returns with Ravichandra S. Mulukutla in Chapter 7 to unravel the Chemical and Catalytic Aspects of Nanocrystals. This section delves into the chemical intricacies of nanocrystals, shedding light on their catalytic properties and potential applications in diverse fields.
Chapters 8 and 9, authored by Olga Koper and Slawomir Winecki, and John Parker respectively, delve into the thermodynamic aspects and Applications of Nanocrystals. The former scrutinizes the specific heats and melting points of nanocrystalline materials, providing insights into their thermal behavior. The latter chapter explores the practical applications of nanocrystals across various industries, highlighting their significance in real-world scenarios.
In concluding this comprehensive exploration, the book is equipped with an index, offering readers a convenient reference tool to navigate the wealth of information presented throughout the chapters. Overall, “Introduction to the Nanoworld” stands as a meticulous compilation, providing readers with a profound understanding of the diverse facets of nanomaterials, from their fundamental properties to cutting-edge applications.
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