Raiseliene Ruta, Linkaite Greta, Zarkov Aleksej, Kareiva Aivaras, Grigoraviciute Inga
Institute of Chemistry, Vilnius University, Naugarduko 24, 03225 Vilnius, Lithuania.
Materials (Basel). 2024 Feb 6;17(4):788. doi: 10.3390/ma17040788.
Magnesium whitlockite (Mg-WH) powders were synthesized with remarkable efficiency via the dissolution-precipitation method by employing an environmentally benign precursor, gypsum. Under optimized conditions, each 5.00 g of initial gypsum yielded an impressive amount of 3.00 g (89% yield) of Mg-WH in a single batch. Remarkably, no XRD peaks attributable to impurity phases were observed, indicating the single-phase nature of the sample. FT-IR analysis confirmed the presence of the PO and HPO groups in the obtained Mg-WH phase. The SEM-EDX results confirmed that Mg-WH crystals with homogeneous Ca, Mg, P, and O distributions were obtained. In previously published research papers, the synthesis of Mg-WH has been consistently described as a highly intricate process due to material formation within a narrow pH and temperature range. Our proposed synthesis method is particularly compelling as it eliminates the need for meticulous monitoring, presenting a notable improvement in the quest for a more convenient and efficient Mg-WH synthesis. The proposed procedure not only emphasizes the effectiveness of the process, but also highlights its potential to meet significant demands, providing a reliable solution for large-scale production needs in various promising applications.
通过采用环境友好型前驱体石膏,利用溶解沉淀法高效合成了镁白磷钙矿(Mg-WH)粉末。在优化条件下,每5.00克初始石膏在一批次中可产出3.00克(产率89%)可观的Mg-WH。值得注意的是,未观察到归因于杂质相的XRD峰,表明样品为单相性质。傅里叶变换红外光谱(FT-IR)分析证实了所得Mg-WH相中存在PO和HPO基团。扫描电子显微镜-能谱仪(SEM-EDX)结果证实获得了具有均匀的钙、镁、磷和氧分布的Mg-WH晶体。在先前发表的研究论文中,由于在狭窄的pH和温度范围内形成材料,Mg-WH的合成一直被描述为一个高度复杂的过程。我们提出的合成方法特别引人注目,因为它无需细致监测,在寻求更便捷高效的Mg-WH合成方面有显著改进。所提出的方法不仅强调了该过程的有效性,还突出了其满足重大需求的潜力,为各种有前景应用中的大规模生产需求提供了可靠的解决方案。