Luminescence properties of poly‐ (phenylene vinylene) derivatives
Identifieur interne : 008787 ( Main/Exploration ); précédent : 008786; suivant : 008788Luminescence properties of poly‐ (phenylene vinylene) derivatives
Auteurs : Cuong Ton-That [Australie] ; Geoff Stockton [Australie] ; Matthew R. Phillips [Australie] ; Thien-Phap Nguyen [France] ; Chun Hao Huang [France] ; Ala CojocaruSource :
- Polymer International [ 0959-8103 ] ; 2008-03.
Descripteurs français
- Wicri :
- topic : Polymère.
English descriptors
- KwdEn :
- Aggregation, Appl phys lett, Backbone, Behppv, Blue shift, Blue shifts, Chain aggregation, Chemical structures, Conformational disorder, Conjugation, Conjugation lengths, Conjugation segment lengths, Derivative, Different side groups, Different temperatures, Electron beam, Electron beam exposure, Electron delocalisation, Emission peak, Emission peaks, Ethyl vinylene, Excitation, Excitation wavelength, Glass substrate, Interchain states, Light emission, Luminescence, Luminescence properties, Mehppv, Mehsppv, Optical properties, Other derivatives, Peak decreases, Phys, Polym, Polymer, Polymer structure, Polymers exhibit, Raman, Raman spectra, Relative intensities, Room temperature, Same temperature, Same wavelength, Side chains, Side group, Side groups, Sulfanyl group, Synth, Technology sydney, Temperature increases, Vibrational modes, Vinylene.
- Teeft :
- Aggregation, Appl phys lett, Backbone, Behppv, Blue shift, Blue shifts, Chain aggregation, Chemical structures, Conformational disorder, Conjugation, Conjugation lengths, Conjugation segment lengths, Derivative, Different side groups, Different temperatures, Electron beam, Electron beam exposure, Electron delocalisation, Emission peak, Emission peaks, Ethyl vinylene, Excitation, Excitation wavelength, Glass substrate, Interchain states, Light emission, Luminescence, Luminescence properties, Mehppv, Mehsppv, Optical properties, Other derivatives, Peak decreases, Phys, Polym, Polymer, Polymer structure, Polymers exhibit, Raman, Raman spectra, Relative intensities, Room temperature, Same temperature, Same wavelength, Side chains, Side group, Side groups, Sulfanyl group, Synth, Technology sydney, Temperature increases, Vibrational modes, Vinylene.
Abstract
BACKGROUND: Conjugated polymers, especially those of the poly(phenylene vinylene) (PPV) family, are promising candidates as emission material in light‐emitting devices. The aim of this work was to investigate the dependence of the luminescence properties of PPV‐based derivatives on their polymer structure, especially side groups.
Url:
DOI: 10.1002/pi.2373
Affiliations:
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Le document en format XML
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Aggregation</term>
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<term>Backbone</term>
<term>Behppv</term>
<term>Blue shift</term>
<term>Blue shifts</term>
<term>Chain aggregation</term>
<term>Chemical structures</term>
<term>Conformational disorder</term>
<term>Conjugation</term>
<term>Conjugation lengths</term>
<term>Conjugation segment lengths</term>
<term>Derivative</term>
<term>Different side groups</term>
<term>Different temperatures</term>
<term>Electron beam</term>
<term>Electron beam exposure</term>
<term>Electron delocalisation</term>
<term>Emission peak</term>
<term>Emission peaks</term>
<term>Ethyl vinylene</term>
<term>Excitation</term>
<term>Excitation wavelength</term>
<term>Glass substrate</term>
<term>Interchain states</term>
<term>Light emission</term>
<term>Luminescence</term>
<term>Luminescence properties</term>
<term>Mehppv</term>
<term>Mehsppv</term>
<term>Optical properties</term>
<term>Other derivatives</term>
<term>Peak decreases</term>
<term>Phys</term>
<term>Polym</term>
<term>Polymer</term>
<term>Polymer structure</term>
<term>Polymers exhibit</term>
<term>Raman</term>
<term>Raman spectra</term>
<term>Relative intensities</term>
<term>Room temperature</term>
<term>Same temperature</term>
<term>Same wavelength</term>
<term>Side chains</term>
<term>Side group</term>
<term>Side groups</term>
<term>Sulfanyl group</term>
<term>Synth</term>
<term>Technology sydney</term>
<term>Temperature increases</term>
<term>Vibrational modes</term>
<term>Vinylene</term>
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<term>Blue shift</term>
<term>Blue shifts</term>
<term>Chain aggregation</term>
<term>Chemical structures</term>
<term>Conformational disorder</term>
<term>Conjugation</term>
<term>Conjugation lengths</term>
<term>Conjugation segment lengths</term>
<term>Derivative</term>
<term>Different side groups</term>
<term>Different temperatures</term>
<term>Electron beam</term>
<term>Electron beam exposure</term>
<term>Electron delocalisation</term>
<term>Emission peak</term>
<term>Emission peaks</term>
<term>Ethyl vinylene</term>
<term>Excitation</term>
<term>Excitation wavelength</term>
<term>Glass substrate</term>
<term>Interchain states</term>
<term>Light emission</term>
<term>Luminescence</term>
<term>Luminescence properties</term>
<term>Mehppv</term>
<term>Mehsppv</term>
<term>Optical properties</term>
<term>Other derivatives</term>
<term>Peak decreases</term>
<term>Phys</term>
<term>Polym</term>
<term>Polymer</term>
<term>Polymer structure</term>
<term>Polymers exhibit</term>
<term>Raman</term>
<term>Raman spectra</term>
<term>Relative intensities</term>
<term>Room temperature</term>
<term>Same temperature</term>
<term>Same wavelength</term>
<term>Side chains</term>
<term>Side group</term>
<term>Side groups</term>
<term>Sulfanyl group</term>
<term>Synth</term>
<term>Technology sydney</term>
<term>Temperature increases</term>
<term>Vibrational modes</term>
<term>Vinylene</term>
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<front><div type="abstract">BACKGROUND: Conjugated polymers, especially those of the poly(phenylene vinylene) (PPV) family, are promising candidates as emission material in light‐emitting devices. The aim of this work was to investigate the dependence of the luminescence properties of PPV‐based derivatives on their polymer structure, especially side groups.</div>
</front>
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<name sortKey="Phillips, Matthew R" sort="Phillips, Matthew R" uniqKey="Phillips M" first="Matthew R" last="Phillips">Matthew R. Phillips</name>
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<name sortKey="Huang, Chun Hao" sort="Huang, Chun Hao" uniqKey="Huang C" first="Chun Hao" last="Huang">Chun Hao Huang</name>
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