Rahman Md Wasikur
Department of Chemical Engineering, Jashore University of Science and Technology, Jashore, 7408, Bangladesh.
Sci Rep. 2021 Aug 9;11(1):16065. doi: 10.1038/s41598-021-95690-4.
Magnesium based niobium oxides (Mg-Nb-O) were prepared by solid-state reactions owing to understand the function of transition metal oxides as promoters/catalysts for practical application. Magnesium niobate (MgNbO) was synthesized for the first time in nearly pure form reported in this context. MgNbO and MgNbO were prepared in oxidizing conditions; on the contrary, MgNbO preferred reducing environment. Stoichiometric mixtures of the precursor materials MgO, NbO and/or metallic Nb were annealed for the syntheses which revealed the effect of temperature on phase formation, reaction kinetics and heat of reaction. The products were examined by ex-situ, in-situ X-ray diffraction (XRD) and differential scanning calorimetry (DSC). Crystallographic parameters of various binary and ternary compounds (Mg/Nb/O) formed in different calcination conditions, were extracted by Rietveld method. In-situ experiment results in single step reaction for the MgNbO synthesis and the heat of formation of the solid-state reaction obtained to be minimum (93 kJ/mol). In contrast, the formation of MgNbO and MgNbO compounds towards pure phases rather complicated due to multistep reactions and corresponding heat of formation were estimated to be 140 and 190 kJ/mol. Experimental results have been discussed based on kinetic and thermodynamic constrains.
为了理解过渡金属氧化物作为促进剂/催化剂在实际应用中的作用,通过固态反应制备了镁基铌氧化物(Mg-Nb-O)。在本文报道的情况下,首次合成了近乎纯态的铌酸镁(MgNbO)。MgNbO和MgNbO是在氧化条件下制备的;相反,MgNbO更倾向于还原环境。前驱体材料MgO、NbO和/或金属Nb的化学计量混合物进行退火以进行合成,这揭示了温度对相形成、反应动力学和反应热的影响。通过非原位、原位X射线衍射(XRD)和差示扫描量热法(DSC)对产物进行了检测。采用Rietveld方法提取了在不同煅烧条件下形成的各种二元和三元化合物(Mg/Nb/O)的晶体学参数。原位实验结果表明,MgNbO合成的单步反应以及固态反应的生成热最低(93 kJ/mol)。相比之下,MgNbO和MgNbO化合物向纯相的形成由于多步反应而相当复杂,估计相应的生成热分别为140和190 kJ/mol。基于动力学和热力学约束对实验结果进行了讨论。