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Electronic and optical properties of conjugated polymers / William Barford.

By: Material type: TextTextLanguage: English Series: Oxford science publications | International series of monographs on physics (Oxford, England) ; 129Publication details: Oxford : Clarendon Press, 2005.Description: xv, 262 p : ill ; 24 cmISBN:
  • 9780198526803
  • 0198526806
  • 9780199553785
Subject(s): DDC classification:
  • 547.704 BAR
Contents:
1. Introduction to Conjugated Polymers 2. Pi-Electron Theory of Conjugated Polymers 3. Non-Interacting Electrons 4. Electron-Lattice Coupling I: Non-Interacting Electrons 5. Interacting Electrons 6. Excitons in Conjugated Polymers 7. Electron-Lattice Coupling II: Interacting Electrons 8. Optical Processes in Conjugated Polymers 9. Electronic Processes in Conjugated Polymers 10. Linear Polyenes and Trans-Polyacetylene 11. Light Emitting Polymers A. Dirac Bra-ket Operator Representation of One-Particle Hamiltonians; B. Particle-Hole Symmetry and Average Occupation Number; C. Single-Particle Eigensolutions of a Periodic Polymer Chain; D. Derivation of the Effective-Particle Schroedinger Equation; E. Hydrogenic Solutions to the Effective-Particle Exciton Models; F. Evaluation of the Electronic Transition Dipole Moments; G. Valence-Bond Description of Benzene; H. Density Matrix Renormalization Group Method
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode
General Books General Books CUTN Central Library Sciences Non-fiction 547.704 BAR (Browse shelf(Opens below)) Available 30279
General Books General Books CUTN Central Library Sciences Non-fiction 547.704 BAR (Browse shelf(Opens below)) 1 Available 7977

First published in paperback 2009.

1. Introduction to Conjugated Polymers 2. Pi-Electron Theory of Conjugated Polymers 3. Non-Interacting Electrons 4. Electron-Lattice Coupling I: Non-Interacting Electrons 5. Interacting Electrons 6. Excitons in Conjugated Polymers 7. Electron-Lattice Coupling II: Interacting Electrons 8. Optical Processes in Conjugated Polymers 9. Electronic Processes in Conjugated Polymers 10. Linear Polyenes and Trans-Polyacetylene 11. Light Emitting Polymers A. Dirac Bra-ket Operator Representation of One-Particle Hamiltonians; B. Particle-Hole Symmetry and Average Occupation Number; C. Single-Particle Eigensolutions of a Periodic Polymer Chain; D. Derivation of the Effective-Particle Schroedinger Equation; E. Hydrogenic Solutions to the Effective-Particle Exciton Models; F. Evaluation of the Electronic Transition Dipole Moments; G. Valence-Bond Description of Benzene; H. Density Matrix Renormalization Group Method

Includes bibliographical references and index.

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