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Conjugated polymer aggregates in solution: Control of interchain interactions

机译:溶液中的共轭聚合物聚集体:链间相互作用的控制

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We present evidence that the degree of interchain interactions and morphology in conjugated polymer films can be controlled by altering the chain conformation in the solution from which the film is cast. Light scattering experiments show that the physical size of poly[2-methoxy-5-(2'-ethyl-hexyloxy)-1,4-phenylene vinylene] (MEH-PPV) chains can vary by a factor of 2 in different solvents such as chlorobenzene (CB) or tetrahydrofuran (THF). Photoluminescence and wavelength-dependent excitation indicate that MEH-PPV forms aggregate species with an absorption and luminescence spectra that are distinctly red-shifted from the intrachain excition. The degree of aggregation is both concentration and solvent dependent; for solutions with concentrations typical of those used in spin casting, aggregates comprise a significant fraction of the total number of excited state species. The overall photoluminescence quantum yield is found to depend both on how restricted the polymer conformation is due to the choice of solvent and on aggregation due to polymer concentration. The excited state aggregates have a longer lifetime than their intrachain exciton counterparts, as evidenced by a near-infrared transient absorption in femtosecond pump-probe and anisotropy measurements. Memory of the chain conformation and the extent of aggregation of MEH-PPV in solution is carried into cast films. Thus, many conflicting results presented on the degree of interchain interactions can be explained by noting that the film samples in different studies were cast from precursor solutions with different solvents and concentrations. Overall, a careful choice of the solution (both solvent and concentration) can be used to produce MEH-PPV films with desired interchain interactions for particular device applications.
机译:我们提供的证据表明,通过改变流延薄膜的溶液中的链构象,可以控制共轭聚合物薄膜中链间相互作用和形态的程度。光散射实验表明,在不同的溶剂中,聚[2-甲氧基-5-(2'-乙基-己氧基)-1,4-亚苯基亚乙烯基](MEH-PPV)链的物理尺寸相差2倍。作为氯苯(CB)或四氢呋喃(THF)。光致发光和依赖于波长的激发表明,MEH-PPV形成聚集体物种,其吸收和发光光谱从链内兴奋性明显红移。聚集程度既取决于浓度又取决于溶剂。对于具有典型浓度的溶液来说,聚集体占激发态物种总数的很大一部分。发现总的光致发光量子产率既取决于由于选择溶剂而对聚合物构象的限制程度,也取决于由于聚合物浓度而引起的聚集。飞秒泵浦探针和各向异性测量中的近红外瞬态吸收证明,激发态聚集体的寿命比链内激子更长。将链构象的记忆和溶液中MEH-PPV的聚集程度记入流延膜中。因此,通过指出不同研究中的薄膜样品是由具有不同溶剂和浓度的前体溶液浇铸而成的,可以解释有关链间相互作用程度的许多相互矛盾的结果。总体而言,可以仔细选择溶液(溶剂和浓度)以生产具有特定设备应用所需链间相互作用的MEH-PPV膜。

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