Marjanowska Agnieszka, El Karout Houda, Guichaoua Dominique, Sahraoui Bouchta, Płóciennik Przemysław, Zawadzka Anna
Institute of Physics, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University in Torun, Grudziadzka 5, 87-100 Torun, Poland.
Centre for Modern Interdisciplinary Technologies, Nicolaus Copernicus University, Wilenska 4, 87-100 Torun, Poland.
Nanomaterials (Basel). 2023 Dec 23;14(1):50. doi: 10.3390/nano14010050.
This article covers selected properties of organic-inorganic thin films of hybrid perovskites with the summary formulas CHNHI, where = Pb, Cd, Ge, Sn, Zn. The paper discusses not only the history, general structure, applications of perovskites and the basics of the theory of nonlinear optics, but also the results of experimental research on their structural, spectroscopic, and nonlinear optical properties. The samples used in all presented studies were prepared in the physical vapor deposition process by using co-deposition from two independent thermal sources containing the organic and inorganic parts of individual perovskites. Ultimately, thin layers with a thickness of the order of nanometers were obtained on glass and crystalline substrates. Their structural properties were characterized by atomic force microscopy imaging. Spectroscopic tests were used to confirm the tested films' transmission quality and determine previously unknown physical parameters, such as the absorption coefficient and refractive index. Experimental results of the nonlinear optical properties were obtained by studying the second and third harmonic generation processes and using initial sample polarization in the so-called Corona poling process. The obtained experimental results allowed us to determine the second- and third-order nonlinear optical susceptibility of the tested materials.
本文涵盖了通式为CHNHI(其中=Pb、Cd、Ge、Sn、Zn)的混合钙钛矿有机-无机薄膜的选定特性。该论文不仅讨论了钙钛矿的历史、一般结构、应用以及非线性光学理论基础,还探讨了关于其结构、光谱和非线性光学特性的实验研究结果。所有呈现研究中使用的样品是通过物理气相沉积法制备的,即从包含各个钙钛矿有机和无机部分的两个独立热源进行共沉积。最终,在玻璃和晶体基板上获得了厚度为纳米级的薄层。通过原子力显微镜成像对其结构特性进行了表征。光谱测试用于确认测试薄膜的透射质量并确定先前未知的物理参数,如吸收系数和折射率。通过研究二次和三次谐波产生过程并在所谓的电晕极化过程中使用初始样品极化,获得了非线性光学特性的实验结果。所获得的实验结果使我们能够确定测试材料的二阶和三阶非线性光学极化率。