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首页> 外文期刊>ACS Omega >Randomization and Constraint of Molecular Alignment and Orientation: Temperature-Dependent Anisotropy and Phase Transition in Vapor-Deposited Thin Films of an Organic Cross-Shaped Molecule
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Randomization and Constraint of Molecular Alignment and Orientation: Temperature-Dependent Anisotropy and Phase Transition in Vapor-Deposited Thin Films of an Organic Cross-Shaped Molecule

机译:分子排列和取向的随机化和约束:有机交叉形分子的气相沉积薄膜中的温度依赖性各向异性和相变。

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We observe potential randomization and constraint of molecular alignment and orientation in an organic semiconductor molecule with increasing temperature up to the phase-transition temperature. Variable-angle spectroscopic ellipsometry and second-harmonic generation are used to study the changes in the molecular alignment in vapor-deposited organic thin films as samples are heated and cooled in a cycle from room temperature to the phase-transition temperature. The films consist of sterically bulky and cross-shaped molecules, 2-cyano-9,10-di(2-naphthyl)anthracene, and the anisotropy of its two moieties is probed. Anisotropic molecular alignment with respect to the surface normal in as-deposited amorphous films changes with the film thickness, which increases slightly with increasing substrate temperature. Moreover, the axis near the long axis of the anthracene moiety changes significantly with respect to the surface normal from the magic angle to isotropic alignment, showing monotonically decreasing anisotropy. Interestingly, the anisotropy of the axis near the long axis of the anthracene moiety disappears before the phase-transition temperature. In contrast, the axis near the short axis of the anthracene moiety exhibits a notable characteristic change in the temperature-dependent alignment during the heating process; although the anisotropy initially decreases, it significantly increases as the temperature approaches the phase transition. At a certain temperature during heating, the film thickness shows a discontinuous jump, similar to a first phase transition, while the anisotropic molecular alignment completely disappears. During the cooling process after the phase transition, however, the properties of the films are irreversibly changed, and anisotropic molecular alignment is no longer observed; thus, the samples become completely isotropic.
机译:我们观察到随着温度升高到相变温度,有机半导体分子中潜在的随机化和分子排列和取向的约束。可变角度光谱椭圆偏振法和二次谐波生成技术用于研究在从室温到相变温度的循环中加热和冷却样品时气相沉积有机薄膜中分子排列的变化。该膜由空间庞大的十字形分子,2-氰基-9,10-二(2-萘基)蒽组成,并探究了其两个部分的各向异性。沉积的非晶膜中相对于表面法线的各向异性分子排列随膜厚而变化,随基底温度的升高而略有增加。而且,蒽表面部分的长轴附近的轴相对于表面法线从幻角到各向同性排列发生显着变化,从而各向异性单调降低。有趣的是,蒽相的长轴附近的轴的各向异性在相变温度之前消失。相反,在加热过程中,蒽部分短轴附近的轴在依赖温度的取向方面表现出显着的特征变化。尽管各向异性最初会降低,但随着温度接近相变,各向异性会显着增加。在加热过程中的特定温度下,膜厚度显示出不连续的跳跃,类似于第一相变,而各向异性分子的排列完全消失了。然而,在相变后的冷却过程中,膜的性能不可逆地改变,并且不再观察到各向异性的分子取向;因此,样品变得完全各向同性。

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