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Substantially Conductive Polymers Part 03
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SYNTHESIS
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Possible Polymerization Mechanism of Acetylene (via the metal-carbene intermediate) 3 Insoluble Infusible Intractable metallocycle metal-carbene
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Solubility Improvement of Polyacetylenes (via incorporation of substituents) 4
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Coplanarity is the key for gaining high conductivity Substituent Effects: Solubility Conductivity 5
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6 A Molecular Orbital Description of Stability Bonding MO: constructive (in-phase) overlap Antibonding MO: destructive (out-of-phase) overlap
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7 Consider the molecular orbitals of 1,4-pentadiene: This compound has 4 e, which forming 2 bonds that are completely separated from one another 4 x 2p 2 x * 2 x
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8 The Molecular Orbitals of 1,3-Butadiene resonance contributors resonance hybrid HOMO LUMO HOMO = the highest occupied MO LUMO = the lowest unoccupied MO 4 x 2p
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9 The Molecular Orbitals of 1,3,5-Hexatriene
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10 Summary of Energy Diagram h h h
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Conjugation / Wavelength / Molar Absorptivity 11
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Metal Semiconductor/ Insulator 12 Bands and Bandgaps Element Solids C : insulator (5.5 eV) Si : semiconductive (1.1 eV) Ge : semiconductive (0.7 eV) Sn : metal (0.1 eV) Pb : metal
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13 increased attraction (nucleus e cloud) Bond dissociation energy (bond strength) : energy required to break a bond or energy released to form a bond increased repulsion (nucleus nucleus) Energy diagram for a H-H bond formation
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14 Bonding in Hydrogen Halides
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Typical Charge Carriers (via doping) 15
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Energy diagrams of charge carriers 16 No. of charge carrier absorption bands: Soliton: 1 Polaron: 3 Bipolaron: 2 π band π* band
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Alternative Methods for Making Polyacetylenes 17 Dehydrochlorination
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Durham Route (via a processable precursor) 18
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19 The Diels–Alder Reaction (1,4-addition reaction; concerted reaction) 8.8 7-45.ppt a pericyclic reaction; a [4+2] cycloaddition reaction 3 2σ+ 1
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20 unstable at RT For the 2nd ring: 24 kcal/mol
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Syntheses of Poly(p-phenylene) (PPP) 21 Had very low molecular weights or irregular structures Reductive polymerization (step-reaction)
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23 Oxidative polymerization (step-reaction) 23
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24 Catalyzed Chain polymerization
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25 Lower the aromatization temperature via the decarboxylation
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26 Free Radical Chain Reaction
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Radical Chain Polymerization Mechanism 27
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Radical Initiators 28
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Chain Transfer 29
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Syntheses of Polyphenylene Vinylene (PPV) 30
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