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首页> 外文期刊>Macromolecules >RIGID-ROD-LIKE MAIN CHAIN POLYMERS WITH RIGIDLY ATTACHED CHROMOPHORES - A NOVEL STRUCTURAL CONCEPT FOR ELECTROOPTICAL MATERIALS .2. THEORY AND ELECTROOPTICAL MEASUREMENTS
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RIGID-ROD-LIKE MAIN CHAIN POLYMERS WITH RIGIDLY ATTACHED CHROMOPHORES - A NOVEL STRUCTURAL CONCEPT FOR ELECTROOPTICAL MATERIALS .2. THEORY AND ELECTROOPTICAL MEASUREMENTS

机译:刚性连接的主要链状聚合物,具有固定的铬酸盐-光电材料的新型结构概念2。理论和光电测量

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摘要

A theoretical approach to describe the electrooptical properties of rigid-like polymers with NLO-active chromophores rigidly attached to the main chains is developed and the results are compared with the experimental data. Due to the particular structure of the polymer, the motion of the chromophores is restricted to the two dimensional rotation of the chromophore around the main chain. Theoretical computations based on Boltzmann-weighted distribution functions predict a pronounced effect of this dimensional restriction on the nonlinear optical properties. In particular, the relaxation of the polar order induced by a strong electrical poling field is shown to be significantly slowed down in comparison to conventional flexible and three-dimensionally mobile main chain systems. Str.uctural investigations on spin-cast films of the polymers designed to realize this concept show a layered morphology with the polymer main chains oriented parallel to the substrate plane. Due to the anisotropic structure, the ratio of the nonzero tensor components chi(222)((2)) and chi(xxx)((2)), as determined by attenuated total reflection, is well above three, in agreement with the theoretical predictions. The relaxation of the polar order is described by a multiexponential decay. The decay follows an Arrhenius-type time-temperature superposition law, which reflects a relaxation mechanism typical for locally activated processes. [References: 36]
机译:开发了一种描述刚性连接到主链上的具有NLO活性发色团的刚性聚合物的电光性质的理论方法,并将其结果与实验数据进行了比较。由于聚合物的特定结构,生色团的运动被限制为生色团围绕主链的二维旋转。基于玻尔兹曼加权分布函数的理论计算预测了这种尺寸限制对非线性光学性能的显着影响。特别地,与常规的柔性和三维可移动主链系统相比,由强电场产生的极性顺序的松弛被显着减慢。对为实现该概念而设计的聚合物旋铸膜的结构研究表明,其层状形态的聚合物主链平行于基底平面取向。由于具有各向异性结构,通过衰减全反射确定的非零张量分量chi(222)((2))和chi(xxx)((2))的比率远高于3,与理论一致预测。极性级数的弛豫由多指数衰减描述。衰减遵循Arrhenius型时间-温度叠加定律,该定律反映了局部激活过程典型的松弛机制。 [参考:36]

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