《聚合物合成与改性技术》 教学大纲(英文版).docx
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1、Polymer Synthesis and Modification TechnologyCourse SyllabusCourse Code:09040003Course Category:Major SelectiveMajors:Intensive Training Class Semester:SpringTotal Hours:36 HoursCredit:2Lecture Hours:36 HoursLab Hours:0Practice Hours:0Textbooks:Contemporary Polymer Chemistry, H. R. Allcock, F. W. La
2、mpe, J. E. Mark, Chemical Industry Press 2006, ISBN: 7502576444.References:1) Polymer Science and Technology, J. R. Fried, Chemical Industry Press 2005, ISBN: 7502568255.2) Principles of Polymer Chemistry, A. Ravve, Chemical Industry Press 2008, ISBN: 9787122009845.3) New techniques of polymer synth
3、esis (the second edition), editor: Jianguo Wang, Chemical Industry Press 2004, ISBN: 7502553150.4) Polymer modification, editors: Yaguang Qi and Xuming Xue, Chemical Industry Press 2005 ,ISBN: 7502563237/G.1618.5) Synthetic technique of polymers, Deren Zhao, Weisheng Zhang, Chemical Industry Press 2
4、004, ISBN: 7502516816.6) Engineering plastics by blending modification, Rusheng Deng, Chemical Industry Press 2005, ISBN: 750254416x.7) Polymer modification, Guoquan Wang, Xiufeng Wang, China Light Industry Press 2008, ISBN: 9787501963621.8) Principles and applications of polymer blending modificati
5、on, Guoquan Wang, China Light Industry Press 2007, ISBN: 9787501957415.9) PMMA resins and their applications, Zhanbiao Ma, Chemical Industry Press 2002, ISBN: 7502533885.Teaching Aim:Polymer synthesis and modification technology is a major selective course in College of Chemistry, Chemical Engineeri
6、ng and Materials Science at the Soochow University. It can be also regarded as a special and basic course for students in different specialties. By taking this course, the students can master the basic concepts, theories and methods of polymer synthesis and processing and will understand the charact
7、eristics of different kinds of polymers.Polymer chemistry is aimed at synthesis and reaction of polymers, and polymermodification underlies wide use of polymeric materials, so both of them are very important to each other. This course will be focused on a) basic theory of polymer reactions, b) relat
8、ionships among reaction theory, structures, properties and applications, and c) basic technology of polymer modification preparation. The students are expected to master the following contents after attending this course:1) to understand some basic concepts such as polymerization rate, average degre
9、e of polymerization, macromolecular microstructure and copolymer composition and some important reagents such as monomer, initiator, catalyst, chain transfer agent, inhibitor, emulsifier and dispersant; 2) to learn basic polymerization methods such as normal and“living”/controlled free radical polym
10、erization, step-growth polymerization, and ionic polymerization; 3) to learn classification of topological polymers including dendrimers and their self-assembly; 4) to master basic theory and methods of polymer modification, molding and production.After taking this course, the students will learn ho
11、w to synthesize polymers from the raw materials, can under the different characteristics of various polymeric materials and can handle the modification process of common polymers. The students can also be capable to solve theengineering problems and can make up the gap between the theoretical knowle
12、dge of polymer chemistry and practical production.To study the present course, the students had better possess the basic knowledge of differential courses, such as polymer structure and properties, polymer chemistry, polymer physics and materials science and engineering. The students should also hav
13、e the basic understandings of mechanics and engineering. The course will be very useful for their further studies and future employment.Chapter OneFree radical polymerization Hours:two weeks,4 hours in totalContents1-1 Chain polymerization familyClassified by the nature of reactive center: radical p
14、olymerization, cationic polymerization, anionic polymerization, coordinating ionic polymerization.Chain polymerization consists of a sequence of three steps: Initiation reaction, Propagation reaction, Termination reaction.Examples on polymers prepared via free radical polymerization.1-2 Mechanism of
15、 radical polymerizationGenerationoffreeradicals:thermaldecomposition,photochemicaldecomposition, oxidation-reduction (redox) reaction, high energy particle radiation.The activity of a free radical is determined by its structure.Reactions of the free radical: addition reaction, coupling reaction, dis
16、proportionation reaction, dissociation reaction, and transfer reaction.1-3 Monomer structure and types of polymerizationMost of the mono olefin, conjugated diolefin, alkyne and carbonyl compounds, and some of the heterocyclic compounds can be polymerized from the thermodynamic viewpoint.However, the
17、 selectivity of various monomers to different polymerization mechanisms varies greatly and depends on some factors such as the electronic effect of the substituents involving the inductive or resonance effect and steric effect.1-4 Elementary reactions of the radical polymerizationThey normally refer
18、 to chain initiation, chain propagation, and chain termination. Perhaps the polymerization is accompanied by chain transfer reaction and so on.1-5 Characteristics of the radical polymerizationThe rate of initiation is the lowest one, which controls the overall rate of polymerization.In conclusion, t
19、he characteristics of radical polymerization are slow initiation, fast propagation, fast termination, and easy transfer.1-5 Initiators and initiationTypes of initiators: azo initiator, organic peroxide initiator, inorganic peroxide initiator, redox initiation system.Kinetics of initiator decompositi
20、on: initiator decomposition rate, initiator efficiency, and choice of initiator.Other initiation systems: thermal-initiated polymerization, light initiated polymerization, and high energy radiation initiated polymerization.1-6 Rate of radical polymerizationPolymerization rate and measuring method, s
21、teady-state polymerization rate equation, effect of temperature on polymerization rate, rate constants of elementary reaction and main parameter, autoacceleration, types of rate changing during the polymerization process, inhibition and retardation.1-7 Molecular weight and chain transfer reactionMol
22、ecular weight is an important parameter to characterize polymers.Factors affect the rate of polymerization, such as the concentration of initiators, the concentration of monomers, the polymerization temperature, and so on, which also affect the molecular weight. Chain transfer reac tion usually does
23、nt affect the rate of the polymerization, however, affects the molecular weight very much.Molecular weight is also an important part in kinetics study. Kinetic chain length and the degree of polymerization.Problems:1 What are molecular weight and polydispersity of polymers?2 Please list the repeatin
24、g unit of the following polymers and monomers to synthesize them: PSt, PMMA, PAA, PVA, PIP, PTFE.3 Please list the resources to generate free radicals. 4 Please list main reactions of radicals.5 Please list three monomers which can be polymerized via radical, ionic and coordination polymerizations.6
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