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Titlebook: Nonlinear Optical and Electroactive Polymers; Paras N. Prasad,Donald R. Ulrich Book 1988 Plenum Press, New York 1988 Carrier.Chemical synt

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Development of Polymeric Nonlinear Optical Materials the controlled delivery of optical energy in specific forms. It is obvious that to meet these requirements, lightwave technology must be developed. Laser developments have satisfied many of the source requirements for these needs. Nonlinear optical (NLO) devices are desirable to process light deriv
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Orientationally Ordered Electro-Optic Materialsssing systems. These technologies require materials with large optical nonlinearities, which certain organic materials have been shown to possess.. . . . Guided wave electro-optic systems require not only large optical nonlinearities, but also materials suitable for waveguiding and integration. Mate
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Molecular Engineering Approaches to Molecular and Macromolecular Nonlinear Optical Materials: Recentoughness, thermal stability, friction resistance, and process ability with regard to forming films, foils, fibers, coatings, etc. Tradidionally the afflication of polymers in optics technology has been limited largely to inexpensive lenses, prisms, fiber optics, anti reflection coatings, filters etc
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Electroactive Polymers: Consequenses of Electron Delocalizationle attention during the past decade because of their interesting electrical conductivity properties.. As summarized in Fig.1, pristine polymers routinely exhibit electrical conductivities typical of insulators or semiconductors. However, upon doping by chemical, electrochemical, or ion implantation,
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Holes, Electrons, Polarons, and Bipolarons and the Thermodynamics of Electrically Active Dopants in onducting polymer, can be used to investigate both electronic species and electron energy level structures in such polymers. Examples are presented, involving conventional inorganic semiconductors, and it is shown how complications anticipated with conducting polymers have occurred and been overcome
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Transient Current Spectroscopy in Polymeric Filmscopy: Given the experimental current I(t) how does one extract a distribution of rates? Extensive new measurements were made in a well studied polymeric material..Photocurrents in polyvinylcarbarzole were studied over 10 decades in time. An analytical approach is proposed for extracting rate distrib
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