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Sodium rubidium hydrogen citrate, NaRbHC6H5O7, and sodium caesium hydrogen citrate, NaCsHC6H5O7: crystal structures and DFT comparisons

机译:铷氢柠檬酸钠,NARBHC6H5O7和柠檬酸铯,NACSHC6H5O7:晶体结构和DFT比较

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摘要

The crystal structure of sodium rubidium hydrogen citrate, NaRbHC6H5O7 or [NaRb(C6H6O7)]n, has been solved and refined using laboratory powder X-ray diffraction data, and optimized using density functional techniques. This compound is isostructural to NaKHC6H5O7. The Na atom is six-coordinate, with a bond-valence sum of 1.16. The Rb atom is eight-coordinate, with a bond-valence sum of 1.17. The distorted [NaO6] octahedra share edges to form chains along the a-axis direction. The irregular [RbO8] coordination polyhedra share edges with the [NaO6] octahedra on either side of the chain, and share corners with other Rb atoms, resulting in triple chains along the a-axis direction. The most prominent feature of the structure is the chain along [111] of very short, very strong hydrogen bonds; the O...O distances are 2.426 and 2.398 Å. The Mulliken overlap populations in these hydrogen bonds are 0.140 and 0.143 electrons, which correspond to hydrogen-bond energies of about 20.3 kcal mol−1. The crystal structure of sodium caesium hydrogen citrate, NaCsHC6H5O7 or [NaCs(C6H6O7)]n, has also been solved and refined using laboratory powder X-ray diffraction data, and optimized using density functional techniques. The Na atom is six-coordinate, with a bond-valence sum of 1.15. The Cs atom is eight-coordinate, with a bond-valence sum of 0.97. The distorted trigonal–prismatic [NaO6] coordination polyhedra share edges to form zigzag chains along the b-axis direction. The irregular [CsO8] coordination polyhedra share edges with the [NaO6] polyhedra to form layers parallel to the (101) plane, unlike the isolated chains in NaKHC6H5O7 and NaRbHC6H5O7. A prominent feature of the structure is the chain along [100] of very short, very strong O—H...O hydrogen bonds; the refined O...O distances are 2.398 and 2.159 Å, and the optimized distances are 2.398 and 2.347 Å. The Mulliken overlap populations in these hydrogen bonds are 0.143 and 0.133 electrons, which correspond to hydrogen-bond energies about 20.3 kcal mol−1.
机译:铷钠氢柠檬酸盐,所述的晶体结构NaRbHC6H5O7或[NARB(C6H6O7)] n的,已经解决了与使用实验室粉末X射线衍射数据细化,使用密度泛函技术优化。这种化合物是对同构NaKHC6H5O7。中的Na原子是六配位,具有1.16的键价之和。该RB原子是八坐标,1.17键价之和。失真[NaO6]八面体共享边缘,以形成沿a轴方向的链。不规则[RbO8]配位多面体份额与[NaO6]八面体上的链的两侧边缘,并且与其他RB原子,从而导致沿a轴方向三重链份额角落。该结构的最突出的特点是沿[111]链条很短,非常强的氢键;将O ... O距离为2.426和2.398埃。该马利肯重叠在这些氢键种群0.140和0.143的电子,其对应于大约20.3千卡摩尔-1的氢键能。铯钠氢柠檬酸盐,所述的晶体结构NaCsHC6H5O7或[NACS(C6H6O7)] n的,也被解决了,并使用实验室粉末X射线衍射数据细化,使用密度泛函技术优化。中的Na原子是六配位,具有1.15的键的化合价之和。在Cs原子是八坐标,0.97键价之和。的畸变三角棱柱形[NaO6]配位多面体共享边缘,以形成Z字形沿着b轴方向链。用[NaO6]多面体以形成层中的不规则[CsO8]配位多面体份额边缘平行于(101)面,不像在NaKHC6H5O7和NaRbHC6H5O7分离的链。该结构的一个突出的特点是沿[100]链条很短,非常强的O - H ... O氢键;精制Ø... O距离为2.398和2.159埃,优化的距离是2.398和2.347埃。该马利肯重叠在这些氢键种群0.143 0.133和电子,它们对应于氢键的能量约20.3千卡摩尔-1。

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