Department of Chemistry and Biochemistry, UCLA, Los Angeles, California 90095-1569, USA.
J Chem Phys. 2010 Jul 28;133(4):044901. doi: 10.1063/1.3436517.
In this paper, we examine the second-harmonic generation (SHG) from spin-cast films of the conjugated polymer poly(2-methoxy-5-(2(')-ethylhexyloxy)para-phenylenevinylene) (MEH-PPV). We find that the SHG intensity depends strongly on the speed used to spin cast the films. Two-dimensional grazing incidence x-ray diffraction (XRD) experiments show that the bulk crystallinity of the MEH-PPV films varies in the same way with spin speed as the SHG intensity. This strongly suggests that instead of being interface specific, the second-harmonic signal from conjugated polymer films is dominated by the crystalline domains in the bulk. The nonmonotonic dependence of both the SHG intensity and the degree of MEH-PPV crystallinity results from a competition between the shear forces and the solvent evaporation rate during spin coating, which produces a maximum degree of crystallinity for MEH-PPV films spin cast at around 1400 rpm. We also use XRD to show that thermal annealing produces MEH-PPV films with a single degree of bulk crystallinity, independent of how they were originally cast. This allows us to model the angle- and thickness-dependent SHG from annealed MEH-PPV films with a single polarizability tensor. We find that the SHG from MEH-PPV films fits best to a bulk-allowed electric quadrupole mechanism, consistent with the bulk SHG seen in other pi-stacked aromatic molecules. Thus, rather than providing information about conjugated polymer interfaces, SHG can be used as a sensitive probe of the local degree of crystallinity in the bulk of conjugated polymer films.
本文研究了旋涂聚(2-甲氧基-5-(2’-乙基己氧基)对苯乙炔)(MEH-PPV)共轭聚合物薄膜的二次谐波产生(SHG)。我们发现 SHG 强度强烈依赖于旋涂速度。二维掠入射 X 射线衍射(XRD)实验表明,MEH-PPV 薄膜的体结晶度随旋涂速度的变化与 SHG 强度相同。这强烈表明,与界面特异性相反,共轭聚合物薄膜的二次谐波信号主要由体相中的结晶畴主导。SHG 强度和 MEH-PPV 结晶度的非单调依赖性是由于旋涂过程中的剪切力和溶剂蒸发速率之间的竞争产生的,对于在约 1400rpm 下旋涂的 MEH-PPV 薄膜,产生最大结晶度。我们还使用 XRD 表明,热退火产生具有单一体相结晶度的 MEH-PPV 薄膜,而与它们的原始铸造方式无关。这使我们能够使用单个极化率张量来模拟退火 MEH-PPV 薄膜的角度和厚度相关的 SHG。我们发现,MEH-PPV 薄膜的 SHG 最符合体允许的电四极子机制,与其他π堆积芳香族分子中观察到的体 SHG 一致。因此,SHG 可以作为共轭聚合物薄膜体相局部结晶度的灵敏探针,而不是提供关于共轭聚合物界面的信息。