Perez Franco Jorge A, García Murillo Antonieta, Carrillo Romo Felipe de J, Romero Ibarra Issis C, Cervantes Tobón Arturo
Instituto Politécnico Nacional CIITEC, Azcapotzalco, Mexico City 02250, Mexico.
Instituto Politécnico Nacional-UPIITA, Mexico City 02580, Mexico.
Materials (Basel). 2024 Dec 26;18(1):58. doi: 10.3390/ma18010058.
The synthesis of ethylamine-based perovskites has emerged to attempt to replace the lead in lead-based perovskites for the alkaline earth elements barium and strontium, introducing chloride halide to prepare the perovskites in solar cell technology. X-ray diffraction studies were conducted, and EXPO2014 software was utilized to resolve the structure. Chemical characterization was performed using Fourier transform infrared spectroscopy, photophysical properties were analyzed through ultraviolet-visible spectroscopy, and photoluminescence properties were determined to confirm the perovskite characteristics. The software employed can determine new crystal structures, as follows: orthorhombic for barium perovskite CHCHNHBaCl and tetragonal for strontium perovskite CHCHNHSrCl. The ultraviolet-visible spectroscopy data demonstrated that a temperature increase (90-110 °C) contributed to reducing the band gap from 3.93 eV to 3.67 eV for barium perovskite and from 4.05 eV to 3.84 eV for strontium perovskite. The results exhibited that new materials can be obtained through gentle chemistry and specialized software like EXPO2014, both of which are capable of conducting reciprocal and direct space analyses for identifying crystal structures using powder X-ray diffraction.
基于乙胺的钙钛矿的合成已出现,试图用碱土元素钡和锶取代铅基钙钛矿中的铅,并引入卤化氯以在太阳能电池技术中制备钙钛矿。进行了X射线衍射研究,并使用EXPO2014软件解析结构。使用傅里叶变换红外光谱进行化学表征,通过紫外可见光谱分析光物理性质,并测定光致发光性质以确认钙钛矿特性。所使用的软件可以确定新的晶体结构,如下:钙钛矿CHCHNHBaCl为正交晶系,钙钛矿CHCHNHSrCl为四方晶系。紫外可见光谱数据表明,温度升高(90 - 110°C)有助于将钡钙钛矿的带隙从3.93 eV降低到3.67 eV,将锶钙钛矿的带隙从4.05 eV降低到3.84 eV。结果表明,可以通过温和的化学方法和像EXPO2014这样的专业软件获得新材料,这两者都能够使用粉末X射线衍射进行倒易空间和正空间分析以识别晶体结构。