To learn the kinetics and mechanism of various polymerization reactions and to expose the students with new materials.
Introduction, classification of polymers, average molecular weight, number-average and weight-average molecular weights, sedimentation and viscosity average molecular weights. Polydispersity and molecular weight distribution, practical significance of molecular weight. Measurement of molecular weights: end-group, viscosity, light scattering, osmotic and ultra centrifugation methods.
Morphology and order in crystalline polymers: configuration of polymer chains, crystal structure of polymers, morphology of crystalline polymers, crystallization and melting, strain-induced morphology, crystallization and melting, glass transition temperature Tg, factors affecting Tg, crystalline melting point Tm, factors affecting Tm.
Mechanism of stepwise polymerization, kinetics and statistics of linear stepwise polymerization, polyfunctional step-reaction polymerization: prediction of gel point. Kinetics of free radical chain polymerization, cationic and anionic polymerization and Kinetics of copolymerization.
Higher boranes, carboranes, metalloboranes and metallocarboranes, compounds with metal-metal multiple bonds.
Classification, structure, properties and applications of naturally occurring silicates and aluminosilicates. Synthesis of pillared clays and zeolites. Characterization of clays and zeolites from measurement of surface area, surface activity pore size, distribution and interlayer spacing. Application of clays, pillared clays and zeolites with emphasis of catalyses.
1. Textbook of Polymer Science; Third Edition; F. W. Billmeyer; John Wiley & Sons, 2002.
2. Polymer Science; First Edition; V.R. Gowariker; New Age International Pvt. Ltd., New Delhi, 2000.
3. Principles of Polymer Science; First Edition; P. Bahadur and N.V. Sastry; Narosa Publishing House, New Delhi, 2002.
4. Material Science and Engineering: An Introduction; W.D. Callister, Wiley.