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A novel water-soluble anionic conjugated copolymer containing poly(p-phenylene vinylene) segments: Copolymer synthesis and multilayer construction by assembling poly(diallyl dimethyl ammonium chloride)
作者姓名:ZHANG Bao  LIN Hang  TANG Jun  LIU JunSong
作者单位:[1]College of Chemistry, Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun 130023, China [2]Key Laboratory of Superhard Materials, Jilin University, Changchun 130023, China
基金项目:Supported by the National Basic Research Program of China (Grant No. 2007CB 808000) and Open Project of State Key Laboratory of Supramolecular Structure and Materials (Grant No. SKLSSM200705)
摘    要:This paper reports the synthesis of a water soluble conjugated polymer poly(p-phenylene vinyleneco-sodium methacrylate) (ws-P(PV-co-SMA)) and the multilayer of the derived copolymer assembling poly(diallyl dimethyl ammanium chloride) (PDDA). The self-assembling process of the multilayer was monitored by UV-vis absorption spectroscopy, and the data indicated a linear increase in film thickness with a number of ws-P(PV-co-SMA)/PDDA bilayers. The alternative deposition of ws-P (PV-co-SMA) and PDDA allowed the insertion of a non-conjugated layer between the conjugated layers, thus the migration of the photogenerated polarons was effectively confined in the isolated ws-P (PV-co-SMA) chains. Consequently, the photoluminescence quantum yield reached 0.68, 30 times higher than that of pure poly(p-phenylen vinylene). The distinct electronic interactions between conjugated segments were confirmed by comparative analyses of the excitation spectra and time-resolved photoluminescence spectra of ws-P(PV-co-SMA) solid film and the assembled multilayers. The confinement effect of the PDDA layer on the photogenerated carriers was verified by the surface photovoltage spectroscopic measurement on both ws-P(PV-co-SMA) solid film and self-assembled multilayers.

关 键 词:二甲基铵  氧化物  PV-co-SMA  光致发光  PDDA  量子物理
收稿时间:2009-03-03
修稿时间:2009-06-14

A novel water-soluble anionic conjugated copolymer containing poly(p-phenylene vinylene) segments: Copolymer synthesis and multilayer construction by assembling poly(diallyl dimethyl ammonium chloride)
ZHANG Bao,LIN Hang,TANG Jun,LIU JunSong.A novel water-soluble anionic conjugated copolymer containing poly(p-phenylene vinylene) segments: Copolymer synthesis and multilayer construction by assembling poly(diallyl dimethyl ammonium chloride)[J].Chinese Science Bulletin,2009,54(19):3515-3520.
Authors:Bao Zhang  Hang Lin  Jun Tang  JunSong Liu
Institution:1 College of Chemistry, Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun 130023, China; 
2 Key Laboratory of Superhard Materials, Jilin University, Changchun 130023, China
Abstract:This paper reports the synthesis of a water soluble conjugated polymer poly(p-phenylene vinylene-co-sodium methacrylate) (ws-P(PV-co-SMA)) and the multilayer of the derived copolymer assembling poly(diallyl dimethyl ammanium chloride) (PDDA). The self-assembling process of the multilayer was monitored by UV–vis absorption spectroscopy, and the data indicated a linear increase in film thickness with a number of ws-P(PV-co-SMA)/PDDA bilayers. The alternative deposition of ws-P (PV-co-SMA) and PDDA allowed the insertion of a non-conjugated layer between the conjugated layers, thus the migration of the photogenerated polarons was effectively confined in the isolated ws-P (PV-co-SMA) chains. Consequently, the photoluminescence quantum yield reached 0.68, 30 times higher than that of pure poly(p-phenylen vinylene). The distinct electronic interactions between conjugated segments were confirmed by comparative analyses of the excitation spectra and time-resolved photoluminescence spectra of ws-P(PV-co-SMA) solid film and the assembled multilayers. The confinement effect of the PDDA layer on the photogenerated carriers was verified by the surface photovoltage spectroscopic measurement on both ws-P(PV-co-SMA) solid film and self-assembled multilayers.
Keywords:anionic conjugated copolymer  poly(phenylen vinylene)  layer-by-layer assembly  water-soluble
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