
Noble Metal Nanoparticles: Preparation, Composite Nanostructures, Biodecoration and Collective Properties
by
Ignac Capek
No ratings yet
Science & Technology
Format
Kindle
Pages
907
Language
Japanese
Published
Jan 1, 2017
Publisher
Springer
Edition
1st ed. 2017
ISBN-10
4431565566
ISBN-13
9784431565567
Description
Ignác Capek’s exploration into noble metal nanoparticles delves deeply into the innovative techniques for their synthesis and application. The intricate chemistry underlying their reaction mechanisms reveals a fascinating array of methodologies used to prepare these tiny yet powerful structures. By emphasizing the role of noble metals, Capek sheds light on their unique properties and the potential they hold across various fields.
The narrative expands into composite nanostructures, showcasing how these nanoparticles can be integrated with other materials to enhance performance. Readers will appreciate the engaging discussions on biodecoration, shedding light on environmentally friendly approaches to modifying these nanoparticles for diverse applications. This aspect not only highlights technological advancements but also addresses sustainability, making the content relevant to contemporary scientific discourse.
Moreover, the book examines the collective properties exhibited by these nanoparticles when gathered in larger assemblies. Such insights pave the way for understanding their behaviors in practical applications, fostering innovation in areas like catalysis and electronic devices.
With its comprehensive coverage and clear explanations, the work serves as an invaluable resource for researchers and students eager to grasp the nuanced science of noble metal nanoparticles and their promising future in technology.
The narrative expands into composite nanostructures, showcasing how these nanoparticles can be integrated with other materials to enhance performance. Readers will appreciate the engaging discussions on biodecoration, shedding light on environmentally friendly approaches to modifying these nanoparticles for diverse applications. This aspect not only highlights technological advancements but also addresses sustainability, making the content relevant to contemporary scientific discourse.
Moreover, the book examines the collective properties exhibited by these nanoparticles when gathered in larger assemblies. Such insights pave the way for understanding their behaviors in practical applications, fostering innovation in areas like catalysis and electronic devices.
With its comprehensive coverage and clear explanations, the work serves as an invaluable resource for researchers and students eager to grasp the nuanced science of noble metal nanoparticles and their promising future in technology.
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