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首页> 外文期刊>Macromolecules >RIGID ROD CONJUGATED POLYMERS FOR NONLINEAR OPTICS .2. SYNTHESIS AND CHARACTERIZATION OF PHENYLENE-ETHYNYLENE OLIGOMERS
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RIGID ROD CONJUGATED POLYMERS FOR NONLINEAR OPTICS .2. SYNTHESIS AND CHARACTERIZATION OF PHENYLENE-ETHYNYLENE OLIGOMERS

机译:用于非线性光学的刚性杆共轭聚合物.2。苯乙炔低聚物的合成与表征

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In order to make a comparison between the properties of low molecular weight poly(phenyleneethynylene) type compounds and the corresponding high molecular weight polymers, we have synthesized oligomers and model molecules of poly(phenyleneethynylene) derivatives by two different routes. This paper describes the synthesis and the X-ray and optical characterization of conjugated soluble oligomers, as well as model trimers and pentamers of the same structure in which the solubility was improved by fixing flexible alkyl chains of 10 or 12 carbons to the backbone. The electron density on the phenyl ring was also enhanced or reduced by introducing either electron-donor or electron-acceptor groups. The oligomers were synthesized by polycondensation using a palladium catalyzed coupling reaction, between a bromoaryl and an ethynylaryl unit, with HBr elimination. This method allows the insertion of a triple bond between two phenyl groups. It was initially used in our laboratory in order to obtain high molecular weight polymers. It has been adapted to favor the production of lower molecular weight compounds, by shortening the reaction time or by an important increase of the amount of catalyst. The trimers and pentamers were synthesized step by step by using a route which involves a selective protection-deprotection method, followed by the palladium coupling reaction. Model compounds and oligomers were characterized by UV-visible and Raman spectroscopies, as well as nonlinear optical measurements of the third order susceptibilities (chi((3))) These measurements allowed us to show the influence of the donor/acceptor groups and the chain lengths on the absorption wavelength. In addition, the nonlinear optical measurements show that the chi((3)) value of the pentamer (1.6 x 10(-10) esu) is close to the value of the polymer (4.6 x 10(-10) esu). [References: 29]
机译:为了比较低分子量聚苯乙炔基类型化合物和相应的高分子量聚合物的性能,我们通过两种不同的途径合成了聚苯乙炔基衍生物的低聚物和模型分子。本文描述了共轭可溶低聚物的合成,X射线和光学表征,以及具有相同结构的模型三聚体和五聚体,其中通过将10或12个碳原子的柔性烷基链固定在骨架上可提高溶解度。通过引入电子给体或电子受体基团,苯环上的电子密度也得以提高或降低。通过使用溴催化的溴化芳基和乙炔基芳基单元之间的钯催化偶联反应,通过缩聚反应合成低聚物。该方法允许在两个苯基之间插入三键。最初在我们的实验室中使用它是为了获得高分子量的聚合物。通过缩短反应时间或通过显着增加催化剂的量,已使其适于生产较低分子量的化合物。三聚体和五聚体通过使用涉及选择性保护-脱保护方法,然后进行钯偶联反应的途径逐步合成。模型化合物和低聚物的特征在于紫外可见光谱和拉曼光谱,以及三阶磁化率的非线性光学测量(chi((3)))。这些测量结果使我们能够显示出供体/受体基团和链的影响。吸收波长的长度。此外,非线性光学测量结果表明,五聚体的chi((3))值(1.6 x 10(-10)esu)接近聚合物的值(4.6 x 10(-10)esu)。 [参考:29]

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