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Polymer Synthesis CHEM 421 Polymer Parameters Chemical structure –Chemical composition and distribution –Sequence length and distribution Molecular weight and distribution Chain isomerism Morphology Topology Additives Cost
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Polymer Synthesis CHEM 421 Hierarchical Fiber Morphology “skin” “core” macrofibril (~1 µ m diameter) microfibril (50 nm)
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Polymer Synthesis CHEM 421 Folded Chain Crystal Habit polymer melt crystallization
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Polymer Synthesis CHEM 421 Polytehylene
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Polymer Synthesis CHEM 421 Polyethylene
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Polymer Synthesis CHEM 421 Fiber Drawing semicrystalline lamellae microfibril
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Polymer Synthesis CHEM 421 Mechanical Properties crystalline amorphous6 GPa 320 GPa microfibril
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Polymer Synthesis CHEM 421 Mesogens (liquid crystals)
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Polymer Synthesis CHEM 421 Crystal & Isotropic Liquid Long-range order - orientational - translational
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Polymer Synthesis CHEM 421 Polyphenyls
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Polymer Synthesis CHEM 421 Crystal Mesophase Isotropic
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Polymer Synthesis CHEM 421 Nematic LC Long-range order - orientational
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Polymer Synthesis CHEM 421 Polyphenyls
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Polymer Synthesis CHEM 421 N versus S A
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Polymer Synthesis CHEM 421 N, S A, S C
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Polymer Synthesis CHEM 421 Typical Calamitic Mesogen n = 6
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Polymer Synthesis CHEM 421 Mesogens
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Polymer Synthesis CHEM 421 Calamitic vs. Discotic Nematics
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Polymer Synthesis CHEM 421 Polymer Liquid Crystals
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Polymer Synthesis CHEM 421 PLCs Thermodynamics
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Polymer Synthesis CHEM 421 Liquid Crystalline Polymers (LCPs) 1970’s: lyotropic LCPs (Kevlar) - ultra-high strength fibers 1980’s: thermotropic Polyesters - stronger, low CTE, low viscosity,
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Polymer Synthesis CHEM 421 Ultra-high Strength Polymers Poly(p-benzamide)s 1967 Stephanie Kwolek & Paul Morgan (DuPont) react diamines with diacids
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Polymer Synthesis CHEM 421 “Stronger than steel?”
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Polymer Synthesis CHEM 421 Origin of Strength? “skin” “core” macrofibril (~1 mm diameter) microfibril (50 nm) extended-chain crystal habit
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Polymer Synthesis CHEM 421 I to N Transition
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Polymer Synthesis CHEM 421 Liquid Crystalline Polymers (LCPs) 1970’s: lyotropic LCPs (Kevlar) - ultra-high strength fibers 1980’s: thermotropic Polyesters - stronger, low CTE, low viscosity, Key: Inexpensive monomers.
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Polymer Synthesis CHEM 421 Liquid Crystalline Polymers (LCPs) Some introductory literature E. T. Samulski “The Mesomorphic State”, Chapter 5 in Physical Properties of Polymers, 3 rd Edt, Cambridge University Press (2004) D. Acierno and A. A. Collyer, Rheology and Processing of Liquid Crystal Polymers, Chapman & Hall (1996) N. A. Plate, Editor. Liquid Crystalline Polymers, Plenum Press, NY (1993). A. A. Collyer, Edt. Liquid Crystal Polymers: From Structures to Applications, Elsevier Applied Science Publishers, London (1992). A. M. Donald and A. H. Windle, Liquid Crystalline Polymers, Cambridge University Press (1991)
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