Oswald Iain D H, Hamilton Andrea, Hall Christopher, Marshall William G, Prior Timothy J, Pulham Colin R
School of Chemistry and Centre for Science at Extreme Conditions, University of Edinburgh, The King's Buildings, West Mains Road, Edinburgh, EH9 3JJ, UK.
J Am Chem Soc. 2008 Dec 31;130(52):17795-800. doi: 10.1021/ja805429m.
An important intermediate phase in the crystallization of aqueous solutions of sodium sulfate is the highly metastable sodium sulfate heptahydrate (Na(2)SO(4).7H(2)O). This has been structurally characterized for the first time by in situ single crystal X-ray diffraction. The crystal structure shows that each sodium cation is octahedrally coordinated to water molecules, with a slight distortion due to one of the water molecules being disordered. The hydrated sodium cations are hydrogen-bonded to form a three-dimensional bonded network, which is markedly different from the architecture of one-dimensional bonded chains observed in sodium sulfate decahydrate (mirabilite). This major structural difference explains the reconstructive nature of the transformation observed between the heptahydrate and mirabilite. High-pressure crystallization of a 3.41 mol/kg water aqueous solution of sodium sulfate at 1.54 GPa in a diamond-anvil cell resulted in the formation of a previously unknown sodium sulfate hydrate, which we have determined by single crystal X-ray diffraction methods to be an octahydrate, Na(2)SO(4).8H(2)O. In this structure the sulfate ions are coordinated directly to sodium ions. This resembles anhydrous sodium sulfate (thenardite) but contrasts with the heptahydrate and decahydrate in which the sodium ions are coordinated exclusively by water molecules. This observation demonstrates how the delicate balance of inter- and intramolecular bonds in the crystal structure can be significantly altered by the application of pressure.
硫酸钠水溶液结晶过程中的一个重要中间相是高度亚稳的七水合硫酸钠(Na₂SO₄·7H₂O)。首次通过原位单晶X射线衍射对其进行了结构表征。晶体结构表明,每个钠离子与水分子呈八面体配位,由于其中一个水分子无序排列而略有畸变。水合钠离子通过氢键形成三维键合网络,这与在十水合硫酸钠(芒硝)中观察到的一维键合链结构明显不同。这种主要的结构差异解释了在七水合物和芒硝之间观察到的转变的重构性质。在金刚石对顶砧池中,1.54 GPa压力下对3.41 mol/kg水的硫酸钠水溶液进行高压结晶,得到了一种以前未知的硫酸钠水合物,通过单晶X射线衍射方法确定其为八水合物Na₂SO₄·8H₂O。在这种结构中,硫酸根离子直接与钠离子配位。这类似于无水硫酸钠(无水芒硝),但与七水合物和十水合物不同,在七水合物和十水合物中钠离子仅由水分子配位。这一观察结果表明,通过施加压力,晶体结构中分子间和分子内键的微妙平衡会如何被显著改变。