Rao Niny, Holerca Marian N, Klein Michael L, Pophristic Vojislava
Department of Chemistry, University of the Sciences in Philadelphia, Philadelphia, Pennsylvania 19104, USA.
J Phys Chem A. 2007 Nov 15;111(45):11395-9. doi: 10.1021/jp0734880. Epub 2007 Oct 18.
The Zr(4+) tetramer, Zr(4)(OH)(8)(H(2)O)(16), is thought to be the major component of the Zr(4+) polymer system in aqueous solution, present as a dominant ionic cluster species compared to other Zr(4+) clusters under various experimental conditions. Despite widespread applications of zirconium, the structure and dynamics of the tetramer in aqueous solution are not well understood. We conducted a combination of ab initio molecular dynamics and quantum mechanical studies in the gas phase and aqueous solution and related our results to the available experimental data to provide atom-level information on the behavior of this species in aqueous solution. Our simulations indicate that the tetramer structure is stable on the picosecond time scale in an aqueous environment and that it is of a planar form, comprising eight-coordinated Zr(4+) ions with an antiprism/irregular dodecahedron ligand arrangement. In combination with our studies of Zr(4+) dimer and trimer clusters, our results provide detailed geometrical information on structural motifs for building zirconium polymers and suggest a possible polymerization path.
Zr(4+)四聚体Zr(4)(OH)(8)(H(2)O)(16)被认为是水溶液中Zr(4+)聚合物体系的主要成分,在各种实验条件下,与其他Zr(4+)簇相比,它作为一种占主导地位的离子簇物种存在。尽管锆有广泛的应用,但四聚体在水溶液中的结构和动力学尚未得到很好的理解。我们在气相和水溶液中进行了从头算分子动力学和量子力学研究,并将我们的结果与现有的实验数据相关联,以提供关于该物种在水溶液中行为的原子级信息。我们的模拟表明,四聚体结构在水环境中在皮秒时间尺度上是稳定的,并且它是平面形式的,由具有反棱柱/不规则十二面体配体排列的八配位Zr(4+)离子组成。结合我们对Zr(4+)二聚体和三聚体簇的研究,我们的结果提供了关于构建锆聚合物的结构基序的详细几何信息,并提出了一种可能的聚合路径。