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Optical Absorption and Visible Photoluminescence from Thin Films of Silicon Phthalocyanine Derivatives

机译:酞菁硅衍生物薄膜的光吸收和可见光致发光

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摘要

The interest of microelectronics industry in new organic compounds for the manufacture of luminescent devices has increased substantially in the last decade. In this paper, we carried out a study of the usage feasibility of three organic bidentate ligands (2,6-dihydroxyanthraquinone, anthraflavic acid and potassium derivative salt of anthraflavic acid) for the synthesis of an organic semiconductor based in silicon phthalocyanines (SiPcs). We report the visible photoluminescence (PL) at room temperature obtained from thermal-evaporated thin films of these new materials. The surface morphology of these films was analyzed by atomic force microscopy (AFM) and scanning electron microscopy (SEM). AFM indicated that the thermal evaporation technique is an excellent resource in order to obtain low thin film roughness when depositing these kinds of compounds. Fourier transform infrared spectroscopy (FTIR) spectroscopy was employed to investigate possible changes in the intra-molecular bonds and to identify any evidence of crystallinity in the powder compounds and in the thin films after their deposition. FTIR showed that there was not any important change in the samples after the thermal deposition. The absorption coefficient (α) in the absorption region reveals non-direct transitions. Furthermore, the PL of all the investigated samples were observed with the naked eye in a bright background and also measured by a spectrofluorometer. The normalized PL spectra showed a Stokes shift ≈ 0.6 eV in two of our three samples, and no PL emission in the last one. Those results indicate that the Vis PL comes from a recombination of charge carriers between conduction band and valence band preceded by a non-radiative relaxation in the conduction band tails.
机译:在过去的十年中,微电子工业对用于制造发光器件的新型有机化合物的兴趣大大增加。在本文中,我们进行了三种有机二齿配体(2,6-二羟基蒽醌,蒽黄酸和蒽黄酸钾衍生物盐)用于合成基于硅酞菁(SiPcs)的有机半导体的可行性研究。我们报告了从这些新材料的热蒸发薄膜获得的室温可见光致发光(PL)。通过原子力显微镜(AFM)和扫描电子显微镜(SEM)分析这些膜的表面形态。 AFM指出,热蒸镀技术是一种很好的资源,可以在沉积这些化合物时获得较低的薄膜粗糙度。傅里叶变换红外光谱(FTIR)光谱用于研究分子内键的可能变化,并确定粉末化合物和薄膜沉积后结晶度的任何证据。 FTIR显示,热沉积后样品没有任何重要变化。吸收区域中的吸收系数(α)显示出非直接跃迁。此外,在明亮的背景下用肉眼观察所有研究样品的PL,并且也通过分光荧光计测量。归一化的PL光谱在我们三个样本中的两个样本中显示了斯托克斯位移≈0.6 eV,在最后一个样本中没有PL发射。这些结果表明,Vis PL来自导带和价带之间的载流子复合,导带尾部无辐射弛豫。

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