School of Chemical and Process Engineering, University of Leeds, Leeds, UK.
The Bragg Centre for Materials Research, University of Leeds, Leeds, UK.
J Microsc. 2022 Dec;288(3):155-168. doi: 10.1111/jmi.13102. Epub 2022 Apr 18.
Insight into the nucleation, growth and phase transformations of calcium sulphate could improve the performance of construction materials, reduce scaling in industrial processes and aid understanding of its formation in the natural environment. Recent studies have suggested that the calcium sulphate pseudo polymorph, gypsum (CaSO ·2H O) can form in aqueous solution via a bassanite (CaSO ·0.5H O) intermediate. Some in situ experimental work has also suggested that the transformation of bassanite to gypsum can occur through an oriented assembly mechanism. In this work, we have exploited liquid cell transmission electron microscopy (LCTEM) to study the transformation of bassanite to gypsum in an undersaturated aqueous solution of calcium sulphate. This was benchmarked against cryogenic TEM (cryo-TEM) studies to validate internally the data obtained from the two microscopy techniques. When coupled with Raman spectroscopy, the real-time data generated by LCTEM, and structural data obtained from cryo-TEM show that bassanite can transform to gypsum via more than one pathway, the predominant one being dissolution/reprecipitation. Comparisons between LCTEM and cryo-TEM also show that the transformation is slower within the confined region of the liquid cell as compared to a bulk solution. This work highlights the important role of a correlated microscopy approach for the study of dynamic processes such as crystallisation from solution if we are to extract true mechanistic understanding.
深入了解硫酸钙的成核、生长和相转变可以改善建筑材料的性能,减少工业过程中的结垢,并有助于理解其在自然环境中的形成。最近的研究表明,硫酸钙假晶石膏(CaSO 4 ·2H 2 O)可以通过半水石膏(CaSO 4 ·0.5H 2 O)中间相在水溶液中形成。一些原位实验工作还表明,半水石膏向石膏的转变可以通过定向组装机制发生。在这项工作中,我们利用液相传输电子显微镜(LCTEM)研究了在过饱和的硫酸钙水溶液中半水石膏向石膏的转变。这与低温 TEM(cryo-TEM)研究进行了基准测试,以验证两种显微镜技术获得的数据的内部一致性。当与拉曼光谱学结合使用时,LCTEM 产生的实时数据以及 cryo-TEM 获得的结构数据表明,半水石膏可以通过多种途径转化为石膏,主要途径是溶解/再沉淀。LCTEM 和 cryo-TEM 之间的比较还表明,与在大量溶液中相比,在液相池的受限区域内,转变速度较慢。这项工作强调了关联显微镜方法在研究从溶液中结晶等动态过程中的重要作用,如果我们要提取真正的机制理解的话。