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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Controlling Morphology and Chain Aggregation in Semiconducting Conjugated Polymers: The Role of Solvent on Optical Gain in MEH-PPV
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Controlling Morphology and Chain Aggregation in Semiconducting Conjugated Polymers: The Role of Solvent on Optical Gain in MEH-PPV

机译:在半导体共轭聚合物中控制形态和链聚集:MEH-PPV中溶剂对光学增益的作用

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We report the results of a detailed investigation that addresses the influence of polymer morphology and chain aggregation, as controlled by the chemical nature of the solvent, on the optical gain properties of the conjugated polymer poly[2-methoxy-5-(2'-ethylhexyIoxy)-p-phenyIene vinylene] (MEH-PPV). Using the variable stripe length technique in the picosecond regime, we have extensively studied the optical gain performance of asymmetric planar waveguides formed with thin MEH-PPV films spin-cast from concentrated chlorobenzene (CB) and tetrahy-drofuran (THF) solutions onto thermally oxidized siliconsubstrates. CB and THF solvents were chosen based on their known ability to promote and effectively limit aggregate formation, respectively. Very large net gain coefficients are demonstrated, reaching values of 330 and 365 cm~(-1), respectively, when optically pumping the waveguides with a maximum energy density of 85 μJ/cm~2. Our results clearly demonstrate that polymer morphology, and hence, the chain conformation dependence of the degree of aggregation in the films as controlled by the solvent, has minimal impact on the net gain. Moreover, the waveguides exhibit low loss coefficients of 10—20 cm~(-1) at the ASE wavelength. These results question the importance of polymer morphology and aggregate formation in polymer-based optical devices operating at high excitation densities in the stimulated emission regime as would be characteristic of lasers and optical amplifiers.
机译:我们报告了详细研究的结果,该研究解决了聚合物形态和链聚集(受溶剂的化学性质控制)对共轭聚合物聚[2-甲氧基-5-(2'- (乙基己氧基)-对-苯撑亚乙烯基](MEH-PPV)。在皮秒状态下,使用可变条纹长度技术,我们已广泛研究了由浓氯苯(CB)和四氢呋喃(THF)溶液旋铸到热氧化后的MEH-PPV薄膜形成的不对称平面波导的光学增益性能硅基板。选择CB和THF溶剂分别是基于它们已知的促进和有效限制聚集体形成的能力。当以最大能量密度为85μJ/ cm〜2的光泵浦波导时,显示出非常大的净增益系数,分别达到330和365 cm〜(-1)的值。我们的结果清楚地表明,聚合物的形态以及因此受溶剂控制的薄膜中聚集度的链构象依赖性对净增益的影响极小。此外,波导在ASE波长处显示10-20 cm〜(-1)的低损耗系数。这些结果质疑了聚合物形态和聚集体形成在基于聚合物的光学器件中的重要性,该光学器件在受激发射态下以高激发密度工作,这是激光器和光放大器的特征。

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