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Comparison of the high-pressure and low-temperature structures of sulfuric acid

机译:硫酸的高压和低温结构比较

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We have determined the high-pressure crystal-structure of sulfuric acid, including the positions of the hydrogen atoms, using a combination of single-crystal X-ray diffraction techniques and ab initio density functional calculations. Just above the onset of crystallization, at 0.7 GPa, we find that a previously unobserved monoclinic structure, with P2(1)/c symmetry, is formed which is characterised by SO2 (OH)(2) tetrahedra interconnected by hydrogen bonds. In contrast to the low-temperature C2/c phase, the tetrahedra in the high-pressure crystal structure are no longer arranged in R-4(4)(16) hydrogen-bonded layers but, instead, they form chains where the hydrogen bonding adopts a R-3(3)(12) arrangement. A series of ab initio calculations indicates that this rearrangement of the molecules results in a relatively small reduction in the enthalpy (13.603 kJ mol(-1)) for the P2(1)/c structure at 0.7 GPa. [References: 25]
机译:我们已经结合单晶X射线衍射技术和从头算密度函数计算,确定了硫酸的高压晶体结构,包括氢原子的位置。刚好在0.7 GPa的结晶开始时,我们发现形成了以前未观察到的具有P2(1)/ c对称性的单斜晶结构,其特征是通过氢键互连的SO2(OH)(2)四面体。与低温C2 / c相相反,高压晶体结构中的四面体不再排列在R-4(4)(16)氢键合层中,而是在其中形成氢键的链采用R-3(3)(12)的布置。一系列从头算的计算表明,这种分子的重排导致在0.7 GPa时P2(1)/ c结构的焓降低较小(13.603 kJ mol(-1))。 [参考:25]

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