Mahfoudh N, Karoui K, BenRhaiem A
Laboratory of Spectroscopic Characterization and Optic Materials, Faculty of Sciences, University of Sfax B. P. 1171 3000 Sfax Tunisia
RSC Adv. 2021 Jul 13;11(40):24526-24535. doi: 10.1039/d1ra03652a.
[DMA]ZnCl, [DMA]CoCl and [DMA]ZnBr crystallized in the monoclinic system, in the 2/, 2/ and 2/ space groups, respectively. The optical properties of [DMA]MCl (M = Zn and Co) and [DMA]ZnBr were studied using ultraviolet-visible (UV-Vis) spectroscopy in the range of 200-800 nm. The Tauc model was used to determine the band gap energy of each hybrid compound. The calculated values of the direct and indirect band gaps ( , ) for all samples were found to be in the range of 1.91 eV to 4.29 eV for [DMA]ZnCl, 4.76 eV to 5.34 eV for [DMA]ZnBr and 1.77 eV to 3.84 eV for [DMA]CoCl. The Urbach energy ( ), extinction coefficient () and refractive index () of each compound was calculated. On the other hand, the dispersion of () is discussed in terms of the single oscillator Wemple-DiDomenico model. The single oscillator energy ( ), the dispersion energy ( ), and both the real and imaginary parts of the dielectric permittivity were estimated. The variation of optical conductivity with the incident photon energy has also been studied. We employed impedance spectroscopy to thoroughly investigate the dipolar dynamics in the prepared materials. The evolution of the dielectric loss, as a function of frequency, showed a distribution of relaxation times, which probably could be of a Maxwell-Wagner type interfacial polarization relaxation, possibly attributed to grain boundary effects or blocking at the contacts. In fact, the current work opens an efficient path to high quality organic-inorganic halide perovskites with good optical properties, which makes them suitable for application in nonlinear optoelectronic devices.
[二甲基乙酰胺]氯化锌、[二甲基乙酰胺]氯化钴和[二甲基乙酰胺]溴化锌分别在单斜晶系中结晶,空间群分别为2/、2/和2/。利用紫外-可见(UV-Vis)光谱在200 - 800纳米范围内研究了[二甲基乙酰胺]MCl(M = 锌和钴)和[二甲基乙酰胺]溴化锌的光学性质。使用陶克模型确定每种混合化合物的带隙能量。发现所有样品的直接和间接带隙( , )的计算值对于[二甲基乙酰胺]氯化锌在1.91电子伏特至4.29电子伏特范围内,对于[二甲基乙酰胺]溴化锌在4.76电子伏特至5.34电子伏特范围内,对于[二甲基乙酰胺]氯化钴在1.77电子伏特至3.84电子伏特范围内。计算了每种化合物的乌尔巴赫能量( )、消光系数()和折射率()。另一方面,根据单振子温普尔-迪多梅尼科模型讨论了()的色散。估计了单振子能量( )、色散能量( )以及介电常数的实部 和虚部 。还研究了光导率随入射光子能量的变化。我们采用阻抗谱来全面研究制备材料中的偶极动力学。介电损耗随频率的变化显示出弛豫时间的分布,这可能是麦克斯韦-瓦格纳型界面极化弛豫,可能归因于晶界效应或接触处的阻挡。事实上,当前的工作为具有良好光学性质的高质量有机-无机卤化物钙钛矿开辟了一条有效途径,这使得它们适用于非线性光电器件中的应用。