Swain Diptikanta, Row Tayur N Guru
Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.
Inorg Chem. 2007 May 28;46(11):4411-21. doi: 10.1021/ic061901x. Epub 2007 Apr 24.
Evaluation of phase transitions in a series of hydrogen sulfates (Rb3H(SO4)2, (NH4)3H(SO4)2, K3 H(SO4)2, and Na3H(SO4)2) based on the single-crystal structure analysis has revealed the exact nature of such transitions and has sorted out the various ambiguities involved in earlier literature. Rb3H(SO4)2 at 293 K is C2/c. It is isostructural to its ammonium analogue, (NH4)3H(SO4)2, at room temperature. However, the variable temperature single-crystal diffraction studies indicate that the phase transition mechanism is different. When cooled to 100 K, the structure of Rb3H(SO4)2 remains C2/c. When heated to 350 K, it transforms to C2/m (with double the volume at room temperature), which changes to C2/c (with 4 times the volume at room temperature) at 425 K. The high-temperature (420 K) structural phase transition in (NH4)3H(SO4)2 is shown to be Rm. The structure of Na3H(SO4)2 remains invariant (P21/c) throughout the range of 100-500 K except for the usual contraction of the unit cell at 100 K and expansion at 500 K. The structural phase transitions with temperature for the compound K3H(SO4)2 are very different from those claimed in earlier literature. The hydrogen atom participating in the crucial hydrogen bond joining the two sulfate tetrahedra controls the structural phase transitions at low temperatures in all four compounds. The distortion of the SO4 tetrahedra and the coordination around the metal atom sites control the phase evolution in the Rb compound, while the Na and K analogues show no phase transitions at high temperature, and the NH4 system transforms to a higher symmetry space group resulting in a disorder of the sulfate moiety.
基于单晶结构分析对一系列硫酸氢盐(Rb3H(SO4)2、(NH4)3H(SO4)2、K3H(SO4)2和Na3H(SO4)2)的相变进行评估,揭示了此类相变的确切性质,并厘清了早期文献中存在的各种模糊之处。Rb3H(SO4)2在293 K时为C2/c结构。它在室温下与铵类同物(NH4)3H(SO4)2同构。然而,变温单晶衍射研究表明相变机制不同。冷却至100 K时,Rb3H(SO4)2的结构仍为C2/c。加热至350 K时,它转变为C2/m(室温下体积翻倍),在425 K时变为C2/c(室温下体积变为四倍)。(NH4)3H(SO4)2在高温(420 K)下的结构相变显示为Rm。Na3H(SO4)2的结构在100 - 500 K范围内保持不变(P21/c),除了在100 K时晶胞通常收缩以及在500 K时膨胀。化合物K3H(SO4)2随温度的结构相变与早期文献中声称的非常不同。参与连接两个硫酸根四面体的关键氢键的氢原子控制着所有四种化合物在低温下的结构相变。SO4四面体的畸变以及金属原子位点周围的配位控制着Rb化合物中的相演变,而Na和K的类似物在高温下没有相变,并且NH4体系转变为更高对称性的空间群,导致硫酸根部分无序。