首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Coordination chemistry of mercury(II) in liquid and aqueous ammonia solution and the crystal structure of tetraamminemercury(II) perchlorate
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Coordination chemistry of mercury(II) in liquid and aqueous ammonia solution and the crystal structure of tetraamminemercury(II) perchlorate

机译:液态和氨水溶液中汞(II)的配位化学和高氯酸四胺(II)的晶体结构

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摘要

The ammonia solvated mercury(II) ion has been structurally characterized in solution by means of EXAFS, Hg-199 NMR, and Raman spectroscopy and in solid solvates by combining results from X-ray single crystal and powder diffraction, thermogravimetry, differential scanning calorimetry, EXAFS, and Raman spectroscopy. Crystalline tetraamminemercury(II) perchlorate, [Hg(NH3)(4)](ClO4)(2), precipitates from both liquid ammonia and aqueous ammonia solution, containing tetraamminemercury(II) complexes. The orthorhombic space group (Pnma) imposes Q, symmetry on the tetraamminemercury(II) complexes, which is lost at a phase transition at about 220 K. The Hg-N bond distances are 2.175(14), 2.255(16), and 2 x 2.277(9) angstrom, with a wide N-Hg-N angle between the two shortest Hg-N bonds, 122.1(7)degrees, at ambient temperature, A similar distorted tetrahedral coordination geometry is maintained in liquid ammonia and aqueous ammonia solutions with the mean Hg-N bond distances 2.225(12) and 2.226(6) A, respectively. When heated to 400 K the solid tetraamminemercury(II) perchlorate decomposes to diamminemercury(II) perchlorate, [Hg(NH3)(2)](ClO4)(2), with the mean Hg-N bond distance 2.055(6) A in a linear N-Hg-N unit. The mercury atoms in the latter compound form a tetrahedral network, connected by perchlorate oxygen atoms, with the closest Hg center dot center dot center dot Hg distance being 3.420(3) angstrom. The preferential solvation and coordination changes of the mercury(II) ion in aqueous ammonia, by varying the total NH3:Hg(II) mole ratio from 0 to 130, were followed by Hg-199 NMR. Solid [Hg(NH3)(4)](ClO4)(2) precipitates while [Hg(H2O)(6)](2+) ions remain in solution at mole ratios below 3-4, while at high mole ratios, [Hg(NH3)4](2+) complexes dominate in solution. The principal bands in the vibrational spectrum of the [Hg(NH3)(4)](2+) complex have been assigned.
机译:通过EXAFS,Hg-199 NMR和拉曼光谱在溶液中对氨化的汞(II)离子进行结构表征,并通过结合X射线单晶和粉末衍射,热重分析,差示扫描量热法, EXAFS和拉曼光谱。结晶的高氯酸四胺汞(II)[Hg(NH3)(4)](ClO4)(2)从液态氨和氨水溶液中均沉淀出,其中含有四胺汞(II)配合物。正交空间群(Pnma)对四胺汞(II)配合物施加Q对称性,该配合物在约220 K的相变处失去。Hg-N键的距离为2.175(14),2.255(16)和2 x 2.277(9)埃,在环境温度下,两个最短的Hg-N键之间的宽N-Hg-N角为122.1(7)度,在液氨和氨水溶液中保持类似的扭曲四面体配位几何形状Hg-N平均键距分别为2.225(12)和2.226(6)A。当加热到400 K时,固体高氯酸四胺汞(II)分解为高氯酸二胺汞(II)[Hg(NH3)(2)](ClO4)(2),平均Hg-N键距为2.055(6)A线性N-Hg-N单元。后一种化合物中的汞原子形成四面体网络,由高氯酸根氧原子连接,最接近的Hg中心点中心点中心点Hg距离为3.420(3)埃。通过将总NH3:Hg(II)摩尔比从0更改为130,氨水中汞(II)离子的优先溶剂化和配位变化,随后进行Hg-199 NMR。固体[Hg(NH3)(4)](ClO4)(2)沉淀,而[Hg(H2O)(6)](2+)离子以低于3-4的摩尔比保留在溶液中,而以高摩尔比,[ Hg(NH3)4](2+)络合物在溶液中占主导地位。 [Hg(NH3)(4)](2+)配合物的振动谱中的主要谱带已指定。

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