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Mesoporous Ordered Silica Films: From Self-Assembly to Order
Mesoporous Ordered Silica Films: From Self-Assembly to Order
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- More about Mesoporous Ordered Silica Films: From Self-Assembly to Order
This book provides a comprehensive guide to obtaining and controlling ordered porous mesophases in thin films through chemical design and post-deposition processing, with a special focus on silica. It is suitable for students and researchers in sol-gel or colloidal chemistry.
Format: Paperback / softback
Length: 113 pages
Publication date: 18 December 2022
Publisher: Springer Nature Switzerland AG
This captivating book delves into the realm of self-assembly in mesoporous ordered silica films, offering a comprehensive and engaging exploration for readers. Starting from a single droplet, it guides the reader through a step-by-step learning process, enabling them to obtain and control ordered porous mesophases in thin films by solely varying the precursor chemistry and the process. In great detail, it elucidates the mechanisms behind order control, emphasizing the role of chemical design and post-deposition processing, which is a unique property in materials science.
The book places a special emphasis on silica, renowned for its complex chemistry that allows for precise control over a wide range of length scales. This makes it an ideal resource for students and researchers in the fields of sol-gel or colloidal chemistry, as well as those interested in self-assembly and mesoporous phases.
The book is organized into five chapters, each dedicated to a specific aspect of self-assembly in mesoporous silica films. The first chapter provides an introduction to the topic, covering the basic principles and terminology associated with mesoporous materials. The subsequent chapters delve into the synthesis and characterization of mesoporous silica films, exploring the influence of precursor chemistry, growth conditions, and post-deposition processing on the structure and properties of the films.
Chapter 2 focuses on the synthesis of mesoporous silica films using various precursors, including silica precursors, metal-organic precursors, and template-directed precursors. It discusses the advantages and disadvantages of each approach and highlights the key factors that determine the final morphology and properties of the films. Chapter 3 explores the role of post-deposition processing in controlling the order and structure of mesoporous silica films. It discusses techniques such as thermal annealing, chemical vapor deposition, and sol-gel synthesis, and their impact on the formation and growth of mesoporous structures.
Chapter 4 delves into the properties of mesoporous silica films, including their pore structure, surface chemistry, and optical properties. It discusses the influence of pore size, shape, and distribution on the adsorption and desorption of molecules, as well as the potential applications of mesoporous silica films in various fields such as catalysis, drug delivery, and energy storage. Chapter 5 concludes the book by discussing the future prospects and challenges in the field of self-assembly in mesoporous silica films. It explores emerging trends in materials science, such as the use of biodegradable and renewable precursors, and the development of new processing techniques for the fabrication of mesoporous silica films with tailored properties.
In conclusion, this book is a valuable resource for students, researchers, and professionals in the fields of sol-gel or colloidal chemistry, as well as those interested in self-assembly and mesoporous phases. It provides a comprehensive and up-to-date understanding of the topic, covering the theoretical background, experimental techniques, and practical applications of self-assembly in mesoporous silica films. By exploring the complex chemistry of silica and its applications, this book offers a glimpse into the exciting possibilities of this emerging field and its potential impact on various industries.
Weight: 203g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030895389
Edition number: 1st ed. 2022
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