Ibrahim Amr A, Ali Shaimaa L, Adly Mina Shawky, El-Hakam S A, Samra S E, Ahmed Awad I
Chemistry Department, Faculty of Science, Mansoura University Mansoura Egypt
RSC Adv. 2021 Nov 19;11(59):37276-37289. doi: 10.1039/d1ra07160b. eCollection 2021 Nov 17.
There is an urgent need to improve engineering and synthetic chemistry, either through the use of eco-friendly starting materials or the proper design of novel synthesis routes. This reduces the contamination of toxic chemicals and helps the disposal of organic dyes. In the current work, a metal-organic framework-based Sr(ii) was fabricated to achieve the desired goal for dye removal and catalysis. Sr-MOF-based phosphotungstic acid (PWA/Sr-MOF) was hydrothermally synthesized to study its adsorption and catalytic activities. Remarkably, about 99.9% of crystal violet (CV) dye was removed using PWA/Sr-MOF within 90 min at room temperature. Various factors have been studied to investigate the optimum conditions such as pH of solution, initial dye concentration, contact time, and temperature. The maximum adsorption capacity of CV dye was reached after 90 min and well fitted the pseudo-second kinetic order and Langmuir adsorption isotherm. Coumarin and xanthene reactions were chosen to test the catalytic activity of the prepared PWA/Sr-MOF at 373 K. Furthermore, structural and chemical characterization of the fabricated samples was obtained using FT-IR, XRD, TGA, DTA, TEM, EDX, and XPS. PWA/Sr-MOF can be considered as a promising and green framework in the material design used to study catalytic and adsorption performances.
迫切需要通过使用环保型起始原料或合理设计新颖的合成路线来改进工程学和合成化学。这减少了有毒化学物质的污染,并有助于有机染料的处理。在当前的工作中,制备了一种基于金属有机框架的Sr(ii),以实现染料去除和催化的预期目标。通过水热合成法制备了基于Sr-MOF的磷钨酸(PWA/Sr-MOF),以研究其吸附和催化活性。值得注意的是,在室温下,使用PWA/Sr-MOF在90分钟内可去除约99.9%的结晶紫(CV)染料。研究了各种因素以探究最佳条件,如溶液的pH值、初始染料浓度、接触时间和温度。CV染料在90分钟后达到最大吸附容量,并且很好地符合准二级动力学模型和朗缪尔吸附等温线。选择香豆素和呫吨反应来测试制备的PWA/Sr-MOF在373 K下的催化活性。此外,使用傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)、热重分析(TGA)、差示热分析(DTA)、透射电子显微镜(TEM)、能谱分析(EDX)和X射线光电子能谱(XPS)对制备的样品进行了结构和化学表征。PWA/Sr-MOF可被视为用于研究催化和吸附性能的材料设计中有前景的绿色框架。