Synthesis Processes and Applications of Silicone Products (2nd Edition) | Edited by Lai Guoqiao, Kōmatsu Tomin et al. (Table of Contents)
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Basic information: Original price: 168.00 yuan. Authors: Compiled by Lai Guoqiao, Kō Matsumatsu, and others. Publisher: Chemical Industry Press. ISBN: 9787122066169. Number of pages: 783. Edition: 1. Binding: Hardcover. Format: 16mo. Publication date: 1-1-2010. Printing date: 1-1-2010. Word count: 1,315,000. Product code: ] Summary: This book provides a comprehensive and detailed overview of the synthesis methods, product properties, and application areas of commonly used silicone compounds. At the same time, a brief introduction to the analysis methods for silicone compounds is also provided. This book is divided into 9 chapters. Including introduction, organic halosilanes, organosilanes, organic polysiloxanes, silicone oils and modified silicone oils, secondary products of silicone oils, silicone rubbers, silicone resins and modified silicone resins, and analysis methods. This book integrates recent domestic and international silicone production technologies with product application techniques, combining theory with actual production. The book provides a detailed description of the physical constants and properties of common silicone monomers and polysiloxanes, as well as the production processes, product formulations, and applications of the main products. It also includes relevant references, making it a highly practical reference book for those working in the field of silicones. This book is primarily intended for those engaged in the research, development, production, and application of silicone materials. It is also of great value as a reference for researchers and managers in the field of new chemical materials and high-tech technologies, as well as for staff in teaching and application departments at relevant universities and institutions. About the author: Lai Guoqiao is a professor at Hangzhou Normal University. He is a male doctor and professor; he is a member of the Materials Science Division of the Fifth Ministry of Education Science and Technology Committee. He enjoys a special allowance from the State Council, is a representative to the 11th Hangzhou People’s Congress, and is considered a leading young academic figure among colleges and universities in Zhejiang Province. He is in charge of the key discipline of \"Organic Chemistry\" in Zhejiang Province, as well as being recognized as an advanced individual within Hangzhou’s \"131\" talent program. Key positions: Assistant to the President of Hangzhou Normal University, Director of the Key Laboratory of Silicon Organic Chemistry and Materials Technology under the Ministry of Education, Dean of the School of Materials, Chemistry and Chemical Engineering at Hangzhou Normal University, Executive Director of the China Fluorosilicon Materials Industry Association, Vice President of China Materials Network, and member of the China Association of Young Scientists and Technologists. Academic Background and Experience: He has been engaged in the research and development of silicone materials for many years. Since 1991, when he took on a key project funded by the former Ministry of Aeronautics and Astronautics, he has led more than 30 projects at or above the provincial and ministerial level, including those under the 863 Program, projects initiated by the General Armaments Department, Project No. 11, and projects sponsored by the National Commission for Science, Technology and Industry for Defense. His research achievements are among the best in China or even at the leading level. He has received 7 awards for scientific and technological progress from institutions such as the Ministry of Education. He has filed over 40 invention patents and published 47 SCI-indexed papers. Among them, the research achievements of \"silicone rubber\" and \"adhesives\" have been applied in the Shenzhou series of spacecraft. The research field is polymer materials. She has been honored as an outstanding teacher in Hangzhou’s education system, one of Hangzhou’s top 10 outstanding young people, an outstanding young person in Zhejiang Province, and an advanced science and technology worker in Hangzhou. She has also received the Hangzhou Outstanding Talent Award, the Hangzhou Youth Science and Technology Award, and Zhejiang’s “Youth May 4th Medal”, among other awards. Master’s Degree Programs Offered: 1. Organic Chemistry 2. Polymer Materials 3. Applied ChemistryMain Research Areas: Silicon chemistry, applied chemistry, polymer materials
Key Courses for Graduate Students: Selected Topics in Silicon Chemistry, Science and Technology of Polymer Materials
Table of Contents
Chapter 1 Introduction
1.1 Silicon and Silicon Bonds
1.1.1 Differences between silicon and carbon
1.1.2 Electronegativity of silicon, bond angles, and ionic bonds
1.1.3 Types and properties of silicon bonds
1.2 Nomenclature of Silicon Compounds
1.2.1 Silanes and their derivatives
1.2.2 Silanide derivatives
1.2.3 Linear polymers
1.2.4 Circular polymers
1.2.5 Polymers with stereoscopic configurations
1.2.6 Polysilanes
1.2.7 Silicon compounds containing metal or semimetal atoms or groups
1.2.8 Silicon-containing groups
1.3 Brief History of Silicon Chemistry and Its Industrial Development
1.4 Production and Market of Silicones
1.4.1 Major foreign silicon companies
1.4.2 Overview of the global silicone industry
1.4.3 Development status of China’s silicone industry
References
Chapter 2 Organohalosilanes
2.1 Introduction
2.2 Methods for Producing Organohalosilanes
2.2.1 Organometallic compound method
2.2.2 Addition method
2.2.3 Condensation method
2.2.4 Redistribution method
2.2.5 Direct method
2.3 Separation and Purification of Organohalosilanes
2.3.1 Separation and purification of methylchlorosilane
2.3.2 Separation and purification of phenylchlorosilane
2.4 Properties of Organohalosilanes
2.4.1 Physical properties
2.4.2 Chemical properties
2.4.3 Physiological properties and toxicity
2.5 Applications of Organohalosilanes
2.5.1 Production of other functional silanes
2.5.2 Production of polysiloxanes
2.5.3 Other applications
2.5.4 Uses of high-boiling, low-boiling substances, excess monomers, and waste catalysts in methylchlorosilane production
References
Chapter 3 Silanes
3.1 Introduction
3.2 Silicon-functionalized silanes
3.2.1 Alkoxy silanes
3.2.2 Organic alkoxy silanes
3.2.3 Organic hydrosilanes
3.2.4 Organic silanols and silanates
3.2.5 Organic acyloxy silanes
3.2.6 Organic aminosilanes
3.2.7 Organic acylamino silanes
3.2.8 Organic oximesilanes and organic isopropenoxy silanes
3.3 Carbon-functionalized organosilanes
3.3.1 Alkenyl silanes
3.3.2 Fluorocarbon-based silanes
3.3.3 Chlorocarbon-based silanes
3.3.4 Bromocarbon-based silanes
3.3.5 Cyanocarbon-based silanes
3.3.6 Isocyanatocarbon-based silanes
3.3.7 Hydroxycarbon-based silanes
3.3.8 Thiocarbon-based silanes
3.3.9 Aminocarbon-based silanes
3.3.10 Epoxycarbon-based silanes
3.3.11 Methacryloyloxycarbon-based silanes
3.3.12 Azido and diazocarbon-based silanes
3.3.13 Other carbon-functionalized silanes
3.3.14 Silane coupling agents
References
Chapter 4 Organic Polysiloxanes
4.1 Introduction
4.2 Preparation of Polysiloxanes
4.2.1 Hydrolytic condensation of silicon-functionalized organosilanes
4.2.2 Hydrolysis of organochlorosilanol
4.2.3 Hydrolysis of silicon-nitrogen compounds
4.2.4 Condensation between difunctional organosilanes
4.2.5 Reactive siloxanes
4.3 Properties of Polysiloxanes
4.3.1 Physical properties
4.3.2 Chemical properties
4.3.3 Biological properties
4.4 Applications of Polysiloxanes
4.4.1 Raw materials for silicone oils, silicone rubbers, and silicone resins
4.4.2 Improvement of properties of organic resins and rubbers
4.4.3 Active ingredients and additives in cosmetics
4.4.5 Pharmaceuticals and medical applications
References
Chapter 5 Silicone Oils and Modified Silicone Oils
Chapter 6 Secondary Products of Silicone Oils
Chapter 7 Silicone Rubbers
Chapter 8 Silicone Resins and Modified Silicone Resins
Chapter 9 Analytical Methods
References
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