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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Raman Spectroscopic Measurements of Scandium(III) Hydration in Aqueous Perchlorate Solution and ab Initio Molecular Orbital Studies of Scandium(III) Water Clusters: Does Sc(III) Occur as a Hexaaqua Complex?
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Raman Spectroscopic Measurements of Scandium(III) Hydration in Aqueous Perchlorate Solution and ab Initio Molecular Orbital Studies of Scandium(III) Water Clusters: Does Sc(III) Occur as a Hexaaqua Complex?

机译:拉曼光谱测量高氯酸盐水溶液中Scan(III)的水合作用以及a(III)水团簇的从头算分子轨道研究:Sc(III)是否以六水合物形式存在?

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We have shown that Sc(III) in aqueous perchlorate solution occurs as a hexaaqua cation. The weak, polarized Raman band assigned to the v_1(a_1g)(ScO_6) mode of the hexaaqua Sc(III) ion has been studied as a funciton of concentraiton. Besides the isotropic component at 442 cm~(-1), two weak depolarized modes at 295 and 410 cm~(-1) were measured in the Raman effect. These two modes of the ScO_6 unit were assigned to v_5(f_2g) and v_2(e_g), respectively. The infrared active mode, v_3(f_1u), was found at 460 cm~(-1). The Raman spectroscopic data suggest that the hexaaqua Sc(III) ion is stable inperchlroate solution within the concentration range measured. Furthermore, the frequency data confirm the centrosymmetry of the Sc(III) aqua complex,j contrary to earlier Raman results. The ScO_6 unit possesses O_h symmetry (water seen as point mass). These findings are in contrast to ScCl_3 solutions, where chloride replaces water in the first hydration sphere and forms one or more chloro complexes. Gas-phase structures, binding energies, and enthalpies are reported for small [Sc(OH_2)_n]~3+ clusters, with one ot nine water molecules in the first sphere. Ab initio molecular orbital calculations were performed at the HF and MP2 levels of theory using different basis sets up to 6-31+G~*. The water molecules in these clusters coordinate the Sc~3+ in highly symmetric arrangements that tend to enhance electrostatic charge-dipole interactions while minimizing ligand-ligand repulsion. The Sc-O bond length for the [Sc(OH_2)_6]~3+ cluster reproduces the experimentally determined bond length (EXAFS) of 2.18 A. The theoretical binding energy for teh [Sc(OH_2)_6]~3+ ion was calculated and accounts for ca. 54-59% of the experimental single ion hydration enthalpy of Sc(III). The stability of the hexaaquascandium(III) cluster could be demonstrated by comparing the stability of the [Sc(OH_2)_6(OH_2)]~3+ cluster with the [Sc(OH_2)_7]~3+ cluster, resulting in the stability of the former. The frequencies of v_1(ScO_6) of the [Sc(OH_2)_6]~3+ cluster are ca. 11% lower than the experimental frequency. The reason for this discrepancy was discussed and found to lie in the lack of the second hydratioin sphere which was subsequently modeled as the [Sc(OH_2)_18]~3+ cluster, denoted Sc[6+12]. Frequencies of the ScO_6 unit for the Sc[6+12) cluster were calculated and agree with the experimental values. The binding enthalpy resemples that of the single ion hydration enthalpy.
机译:我们已经表明高氯酸盐水溶液中的Sc(III)以六水合阳离子的形式出现。已经研究了分配给六水合Sc(III)离子的v_1(a_1g)(ScO_6)模的弱极化拉曼带,作为对映体的函数。除了在442 cm〜(-1)处的各向同性分量外,还通过拉曼效应测量了295和410 cm〜(-1)处的两个弱去极化模式。 ScO_6单元的这两种模式分别分配给v_5(f_2g)和v_2(e_g)。在460 cm〜(-1)处发现了红外激活模式v_3(f_1u)。拉曼光谱数据表明六水合Sc(III)离子在所测浓度范围内是稳定的过氯酸盐溶液。此外,频率数据证实了Sc(III)水络合物的中心对称性,与早期的拉曼结果相反。 ScO_6单元具有O_h对称性(水被视为点质量)。这些发现与ScCl_3溶液相反,ScCl_3溶液在第一个水合作用区内用氯代替水并形成一个或多个氯配合物。报告了小的[Sc(OH_2)_n]〜3 +团簇的气相结构,结合能和焓,其中第一个球中有9个水分子。从头至尾的分子轨道计算是在理论的HF和MP2级别上进行的,使用的是6-31 + G〜*的不同基础集。这些簇中的水分子以高度对称的排列方式与Sc〜3 +进行配位,从而倾向于增强静电荷-偶极子的相互作用,同时使配体-配体的排斥力最小。 [Sc(OH_2)_6]〜3 +团簇的Sc-O键长度再现了实验确定的2.18 A键长(EXAFS)。[Sc(OH_2)_6]〜3 +离子的理论结合能为计算和占约。 Sc(III)的实验单离子水合焓的54-59%。通过比较[Sc(OH_2)_6(OH_2)]〜3 +团簇和[Sc(OH_2)_7]〜3 +团簇的稳定性可以证明六水scan(III)团簇的稳定性。前者。 [Sc(OH_2)_6]〜3 +簇的v_1(ScO_6)的频率约为。比实验频率低11%。讨论了这种差异的原因,发现其原因在于缺少第二个水合蛋白球,随后将其建模为[Sc(OH_2)_18]〜3 +簇,表示为Sc [6 + 12]。计算了Sc [6 + 12)簇的ScO_6单元的频率,并与实验值一致。结合焓代表单离子水合焓。

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