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一种大体积取代聚噻吩的高度取向晶体结构的各向异性光物理性质。

Anisotropic Photophysical Properties of Highly Aligned Crystalline Structures of a Bulky Substituted Poly(thiophene).

作者信息

Wang Yingying, Heck Barbara, Schiefer Daniel, Agumba John O, Sommer Michael, Wen Tao, Reiter Günter

机构信息

Institute of Physics, University of Freiburg, Herman-Herder-Strasse 3, 79104 Freiburg, Germany.

Material Research Center Freiburg (FMF), Stefan-Meier-Strasse 21, 79104 Freiburg, Germany.

出版信息

ACS Macro Lett. 2014 Sep 16;3(9):881-885. doi: 10.1021/mz500411c. Epub 2014 Aug 20.

Abstract

The photophysical properties of a phenyl-substituted poly(thiophene), poly(3-(2,5-dioctylphenyl)thiophene) (PDOPT), were studied as a function of polarization and degree of orientation of the crystalline structure. Under well-chosen controlled conditions, large-sized spherulitic crystals of PDOPT were successfully prepared from the melt. From polarized optical microscopy and X-ray diffraction, the molecular orientation of PDOPT within the spherulite was determined, indicating that the fastest growth direction of the spherulite was the -axis. This implied that crystallization of PDOPT was directed by the packing of the side chains rather than the backbones, which are significantly separated. As the crystalline lamellae were all radially oriented, the local absorbance strongly depended on the polarization of the incoming light. Compared to randomly oriented crystals in a quenched and thus rapidly crystallized sample, PDOPT spherulites displayed red-shifted absorption and emission spectra, combined with a reduced photoluminescence quantum yield. Even for these markedly separated polymer backbones (1.47 nm), the reduced photoluminescence suggests an enhancement of interchain interactions of highly ordered bulky substituted polythiophene induced by crystallization.

摘要

研究了苯基取代的聚噻吩——聚(3 - (2,5 - 二辛基苯基)噻吩)(PDOPT)的光物理性质与晶体结构的极化和取向度之间的关系。在精心选择的控制条件下,成功地从熔体中制备出了大尺寸的PDOPT球晶。通过偏光显微镜和X射线衍射确定了球晶内PDOPT的分子取向,表明球晶的最快生长方向为c轴。这意味着PDOPT的结晶是由侧链而非主链的堆积所引导的,主链之间有明显的间隔。由于结晶薄片都是径向取向的,局部吸光度强烈依赖于入射光的极化。与猝灭并因此快速结晶样品中的随机取向晶体相比,PDOPT球晶表现出红移的吸收和发射光谱,同时光致发光量子产率降低。即使对于这些明显分离的聚合物主链(1.47纳米),光致发光的降低也表明结晶诱导了高度有序的大体积取代聚噻吩链间相互作用的增强。

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