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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >The Relevance of the Collaborative Effect in Determining the Performances of Photorefractive Polymer Materials
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The Relevance of the Collaborative Effect in Determining the Performances of Photorefractive Polymer Materials

机译:协同效应对确定光折变聚合物材料性能的影响

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A derivative of 2-methylindole, 3-[2-(4-nitrophenyl)ethenyl]-1-allyl-2-methylindole, NPEMI-A, is studied for its photoconductivity and photorefractivity behaviour. Its blends with the organic polymer poly-(2,3-dimethyl-N-vinylindole), PVDMI, are also investigated. Due to the expected and devised mutual solubility of the two components of the blends, it is possible to carry out measurements with the weight percent of the chromophore NPEMI-A changing from zero to 100. Films were produced by a squeezing process between two ITO-covered glass sheets. No opacity phenomena, that are so common for many other organic blends due to the segregation of the dissolved chromophore, are observed. The photorefractive optical gain G2 is obtained as a function of the chromophore content. Differential scanning calorimetry measurements (DSC) are also carried out to obtain the whole change of the glass transition temperature Tg as a function of the amount of chromophore contained in the blends. From the experimental trend of Tg a meaningful quantitative estimate of the value of the electrostatic interactions acting in the studied blends, is obtained. The importance of the value of Tg, and of the electrostatic interactions, in determining the extent of the photorefractivity is clearly evident. The results are compared for NPEMI-A (G2= 210 cm-1) and for NPEMI-E (G2-2000 cm-1) that has a N-2- ethylhexyl group instead of a N-allyl group. The Pockels and Kerr contributions and—for the first time—a “collaborative effect” of the photorefractivity of NPEMI-A are distinguished and quantitatively evaluated.
机译:研究了2-甲基吲哚3- [2-(4-硝基苯基)乙烯基] -1-烯丙基-2-甲基吲哚的衍生物NPEMI-A的光电导性和光折射率行为。还研究了其与有机聚合物聚(2,3-二甲基-N-乙烯基吲哚)PVDMI的共混物。由于共混物两种成分的预期和设计互溶性,因此有可能在发色团NPEMI-A的重量百分比从零变为100的情况下进行测量。通过在两种ITO-盖的玻璃板。没有观察到由于溶解的发色团的分离而在许多其他有机混合物中常见的不透明现象。根据生色团含量获得光折变光学增益G2。还进行差示扫描量热法测量(DSC)以获得玻璃化转变温度Tg的整体变化,该变化是共混物中所含发色团的量的函数。从Tg的实验趋势中,可以得出有意义的定量估计值,该估计值是研究的共混物中作用的静电相互作用的值。在确定光折射率的程度中,Tg值和静电相互作用的重要性很明显。比较了具有N-2-乙基己基而不是N-烯丙基的NPEMI-A(G2 = 210 cm-1)和NPEMI-E(G2-2000 cm-1)的结果。区分并定量评估了Pockels和Kerr贡献以及NPEMI-A的光折射率的“协同效应”,这是首次。

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