Pouvreau Maxime, Martinez-Baez Ernesto, Dembowski Mateusz, Pearce Carolyn I, Schenter Gregory K, Rosso Kevin M, Clark Aurora E
Department of Chemistry, Washington State University, Pullman, Washington 99164, United States.
Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.
Inorg Chem. 2020 Dec 21;59(24):18181-18189. doi: 10.1021/acs.inorgchem.0c02660. Epub 2020 Nov 30.
The molecular speciation of aluminum (Al) in alkaline solutions is fundamental to its precipitation chemistry within a number of industrial applications that include ore refinement and industrial processing of Al wastes. Under these conditions, Al is predominantly Al(OH), while at high [Al] dimeric species are also known to form. To date, the mechanism of dimer formation remains unclear and is likely influenced by complex ion···ion interactions. In the present work, we investigate a suite of potential dimerization pathways and the role of ion pairing on energetics using static DFT calculations and DFT and density functional tight binding molecular dynamics. Specific cation effects imparted by the background electrolyte cations Na, Li, and K have been examined. Our simulations predict that, when the Al species are ion-paired with either cation, the formation of the oxo-bridged AlO(OH) is favored with respect to the dihydroxo-bridged Al(OH), in agreement with previous spectroscopic work. The formation of both dimers first proceeds by bridging of two monomeric units via one hydroxo ligand, leading to a labile Al(OH) isomer. The effect of contact ion pairing of Li and K on the dimerization energetics is distinctly more favorable than that of Na, which may have an effect on further oligomerization.
在包括矿石提炼和铝废料工业加工在内的许多工业应用中,铝(Al)在碱性溶液中的分子形态对于其沉淀化学至关重要。在这些条件下,Al主要以Al(OH)形式存在,而在高[Al]时,已知也会形成二聚体物种。迄今为止,二聚体形成的机制仍不清楚,并且可能受到复杂的离子-离子相互作用的影响。在本工作中,我们使用静态密度泛函理论(DFT)计算以及DFT和密度泛函紧束缚分子动力学研究了一系列潜在的二聚化途径以及离子配对对能量学的作用。已经研究了背景电解质阳离子Na、Li和K所产生的特定阳离子效应。我们的模拟预测,当Al物种与任一阳离子进行离子配对时,相对于二羟基桥连的Al(OH),氧桥连的AlO(OH)的形成更受青睐,这与先前的光谱研究结果一致。两种二聚体的形成首先是通过一个羟基配体桥连两个单体单元,从而产生一种不稳定的Al(OH)异构体。Li和K的接触离子配对对二聚化能量学的影响明显比Na更有利,这可能会对进一步的低聚反应产生影响。