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首页> 外文期刊>Macromolecules >Conformational Evolution of Elongated Polymer Solutions Tailors the Polarization of Light-Emission from Organic Nanofibers
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Conformational Evolution of Elongated Polymer Solutions Tailors the Polarization of Light-Emission from Organic Nanofibers

机译:伸长的聚合物溶液的构象演化调整了有机纳米纤维的光的偏振

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摘要

Polymer fibers are currently exploited in tremendously important technologies. Their innovative properties are mainly determined by the behavior of the polymer macromolecules under the elongation induced by external mechanical or electrostatic forces, characterizing the fiber drawing process. Although enhanced physical properties were observed in polymer fibers produced under strong stretching conditions, studies of the process-induced nanoscale organization of the polymer molecules are not available, and most of fiber properties are still obtained on an empirical basis. Here we reveal the orientational properties of semiflexible polymers in electrospun nanofibers, which allow the polarization properties of active fibers to be finely controlled. Modeling and simulations of the conformational evolution of the polymer chains during electrostatic elongation of semidilute solutions demonstrate that the molecules stretch almost fully within less than 1 mm from jet start, increasing polymer axial orientation at the jet center. The nanoscale mapping of the local dichroism of individual fibers by polarized near-field optical microscopy unveils for the first time the presence of an internal spatial variation of the molecular order, namely the presence of a core with axially aligned molecules and a sheath with almost radially oriented molecules. These results allow important and specific fiber properties to be manipulated and tailored, as here demonstrated for the polarization of emitted light.
机译:当前,聚合物纤维被用于极其重要的技术中。它们的创新性能主要取决于聚合物大分子在外部机械力或静电力引起的伸长下的行为,这是纤维拉伸过程的特征。尽管在强拉伸条件下生产的聚合物纤维中观察到了增强的物理性能,但尚无法进行过程诱导的聚合物分子纳米级组织的研究,并且大多数纤维性能仍基于经验获得。在这里,我们揭示了电纺纳米纤维中半柔韧性聚合物的取向特性,可以精确控制活性纤维的偏振特性。在半稀释溶液的静电伸长过程中,聚合物链构象演变的建模和仿真表明,分子在距射流起点不到1 mm的范围内几乎完全拉伸,从而增加了射流中心的聚合物轴向取向。通过偏振近场光学显微镜对单个纤维的局部二向色性进行纳米级绘制,首次揭示了分子级内部空间变化的存在,即存在具有轴向排列分子的核和几乎呈放射状的鞘的存在定向分子。这些结果使重要的和特定的纤维特性得以操纵和调整,如此处所示,用于发射光的偏振。

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