Ol Gel A Versatile And Wide Technology


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Sol-Gel - A Versatile and Wide Technology


Sol-Gel - A Versatile and Wide Technology

Author:

language: en

Publisher: BoD – Books on Demand

Release Date: 2025-06-18


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The sol-gel method is a powerful and versatile wet chemical process for synthesizing advanced materials, particularly oxide-based nanostructures. Its ability to produce materials in various forms, such as powders, thin films, fibers, and aerogels, makes it a valuable tool in fields ranging from electronics and energy to medicine and environmental science. This book provides a comprehensive overview of sol-gel technology, highlighting its cost-effectiveness, flexibility, and precise control over material properties. Special attention is given to developing sustainable sol-gel processes in response to increasing environmental concerns. Emerging eco-friendly synthesis routes, including using plant extracts, biopolymers, and non-toxic solvents, are explored as natural polymerizing agents and reaction media. These green approaches offer a sustainable alternative to conventional methods, reducing the need for hazardous chemicals while maintaining high-performance material characteristics. By exploring both traditional and innovative sol-gel techniques, this volume serves as an essential resource for researchers, scientists, and industry professionals seeking to harness the full potential of sol-gel technology in modern material development.

Handbook of Sol-Gel Science and Technology


Handbook of Sol-Gel Science and Technology

Author: Lisa Klein

language: en

Publisher: Springer Nature

Release Date: 2018-05-31


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This completely updated and expanded second edition stands as a comprehensive knowledgebase on both the fundamentals and applications of this important materials processing method. The diverse, international team of contributing authors of this reference clarify in extensive detail properties and applications of sol-gel science and technology as it pertains to the production of substances, active and non-active, including optical, electronic, chemical, sensor, bio- and structural materials. Essential to a wide range of manufacturing industries, the compilation divides into the three complementary sections: Sol-Gel Processing, devoted to general aspects of processing and recently developed materials such as organic-inorganic hybrids, photonic crystals, ferroelectric coatings, and photocatalysts; Characterization of Sol-Gel Materials and Products, presenting contributions that highlight the notion that useful materials are only produced when characterization is tied to processing, such as determination of structure by NMR, in-situ characterization of the sol-gel reaction process, determination of microstructure of oxide gels, characterization of porous structure of gels by the surface measurements, and characterization of organic-inorganic hybrid; and Applications of Sol-Gel Technology, covering applications such as the sol-gel method used in processing of bulk silica glasses, bulk porous gels prepared by sol-gel method, application of sol-gel method to fabrication of glass and ceramic fibers, reflective and antireflective coating films, application of sol-gel method to formation of photocatalytic coating films, and application of sol-gel method to bioactive coating films. The comprehensive scope and integrated treatment of topics make this reference volume ideal for R&D scientists and engineers across a wide range of disciplines and professional interests.

Handbook of sol-gel science and technology. 1. Sol-gel processing


Handbook of sol-gel science and technology. 1. Sol-gel processing

Author: Sumio Sakka

language: en

Publisher: Springer Science & Business Media

Release Date: 2005


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Since Dr. Disiich of Germany prepared a glass lens by the sol-gel method around 1970, sol-gel science and technology has continued to develop. Since then this field has seen remarkable technical developments as well as a broadening of the applications of sol-gel science and technology. There is a growing need for a comprehensive reference that treats both the fundamentals and the applications, and this is the aim of "Handbook of Sol-Gel Science and Technology."The primary purpose of sol-gel science and technology is to produce materials, active and non-active including optical, electronic, chemical, sensor, bio- and structural materials. This means that sol-gel science and technology is related to all kinds of manufacturing industries. Thus Volume 1, "Sol-Gel Processing," is devoted to general aspects of processing. Newly developed materials such as organic-inorganic hybrids, photonic crystals, ferroelectric coatings, photocatalysts will be covered. Topics in this volume include: Volume 2, "Characterization of Sol-Gel Materials and Products, "highlights the important fact that useful materials are only produced when characterization is tied to processing. Furthermore, characterization is essential to the understanding of nanostructured materials, and sol-gel technology is a most important technology in this new field. Since nanomaterials display their functional property based on their nano- and micro-structure, "characterization" is very important. Topics found in Volume 2 include: Sol-gel technology is a versatile technology, making it possible to produce a wide variety of materials and to provide existing substances with novel properties. This technology was applied to producingnovel materials, for example organic-inorganic hybrids, which are quite difficult to make by other fabricating techniques, and it was also applied to producing materials based on high temperature superconducting oxides. "Applications of Sol-Gel Technology," (Volume 3), will cover applications such as: