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Impact of annealing process on stacking orientations and second order nonlinear optical properties of metallophthalocyanine thin films and nanostructures

机译:退火工艺对金属酞菁薄膜和纳米结构堆叠取向和二阶非线性光学性质的影响

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摘要

Abstract The paper presents the second order nonlinear optical properties of Cu, Co, Mg and Zn metallophtalocyanines thin films. The films were fabricated by physical vapor deposition in high vacuum onto fused silica glass substrates. In order to investigate both optical and structural properties an annealing process in an ambient atmosphere for 12 h at temperatures equal to either 150 °C or 250 °C applied after the fabrication process. Atomic force microscopy images were obtained for an observation of the structural property changes. The thickness of the thin films was in the range from 80 nm to 120 nm. The size and shape of the forming nanostructures were different for different metallophthalocyanines and depended on the phase of the material. As-deposited sample of copper phthalocyanine formed the smallest nanostructures – standing columns with 100 nm of the height and 40 nm of the diameter. Annealed sample formed the largest nanostructures – lying cuboids with dimensions: 10 × 1000 × 40 nm. The second harmonic generation measurements have been carried out in order to investigate the second order nonlinear optical properties and their dependence on the structure of the thin films after the annealing process. Moreover the fittings based on the two models have been carried out in order to understand deeper the origin of the experimental findings. It was found that the annealing process can significantly modify both the structural and the second order nonlinear optical properties of the metallophthalocyanine thin films.
机译:摘要本文介绍了铜,钴,镁和锌金属酞菁薄膜的二阶非线性光学性质。通过在高真空下物理气相沉积到熔融石英玻璃基板上来制造薄膜。为了研究光学和结构特性,在制造工艺之后在等于150°C或250°C的温度下于环境气氛中进行12h退火处理。获得原子力显微镜图像以观察结构性质变化。薄膜的厚度在80纳米至120纳米的范围内。对于不同的金属酞菁,形成的纳米结构的尺寸和形状是不同的,并且取决于材料的相。沉积的铜酞菁样品形成了最小的纳米结构-立柱,高度为100 nm,直径为40 nm。退火样品形成了最大的纳米结构-长方体,尺寸为:10×1000×40nm。为了研究二次非线性光学性质及其在退火过程之后对薄膜结构的依赖性,已经进行了二次谐波产生测量。此外,已经进行了基于两个模型的拟合,以便更深入地了解实验结果的起源。发现退火工艺可以显着地改变金属酞菁薄膜的结构和二阶非线性光学性质。

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