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二氧化硫、亚硫酸盐和磺酸盐溶液以及取代磺酸盐离子X3CSO3-(X = H、Cl、F)的硫X射线吸收和振动光谱研究

Sulfur X-ray absorption and vibrational spectroscopic study of sulfur dioxide, sulfite, and sulfonate solutions and of the substituted sulfonate ions X3CSO3- (X = H, Cl, F).

作者信息

Risberg Emiliana Damian, Eriksson Lars, Mink János, Pettersson Lars G M, Skripkin Mikhail Yu, Sandström Magnus

机构信息

Department of Physical, Inorganic and Structural Chemistry, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

Inorg Chem. 2007 Oct 1;46(20):8332-48. doi: 10.1021/ic062440i. Epub 2007 Sep 5.

Abstract

Sulfur K-edge X-ray absorption near-edge structure (XANES) spectra have been recorded and the S(1s) electron excitations evaluated by means of density functional theory-transition potential (DFT-TP) calculations to provide insight into the coordination, bonding, and electronic structure. The XANES spectra for the various species in sulfur dioxide and aqueous sodium sulfite solutions show considerable differences at different pH values in the environmentally important sulfite(IV) system. In strongly acidic (pH < approximately 1) aqueous sulfite solution the XANES spectra confirm that the hydrated sulfur dioxide molecule, SO2(aq), dominates. The theoretical spectra are consistent with an OSO angle of approximately 119 degrees in gas phase and acetonitrile solution, while in aqueous solution hydrogen bonding reduces the angle to approximately 116 degrees . The hydration affects the XANES spectra also for the sulfite ion, SO32-. At intermediate pH ( approximately 4) the two coordination isomers, the sulfonate (HSO3-) and hydrogen sulfite (SO3H-) ions with the hydrogen atom coordinated to sulfur and oxygen, respectively, could be distinguished with the ratio HSO3-:SO3H- about 0.28:0.72 at 298 K. The relative amount of HSO3- increased with increasing temperature in the investigated range from 275 to 343 K. XANES spectra of sulfonate, methanesulfonate, trichloromethanesulfonate, and trifluoromethanesulfonate compounds, all with closely similar S-O bond distances in tetrahedral configuration around the sulfur atom, were interpreted by DFT-TP computations. The energy of their main electronic transition from the sulfur K-shell is about 2478 eV. The additional absorption features are similar when a hydrogen atom or an electron-donating methyl group is bonded to the -SO3 group. Significant changes occur for the electronegative trichloromethyl (Cl3C-) and trifluoromethyl (F3C-) groups, which strongly affect the distribution especially of the pi electrons around the sulfur atom. The S-D bond distance 1.38(2) A was obtained for the deuterated sulfonate (DSO3-) ion by Rietveld analysis of neutron powder diffraction data of CsDSO3. Raman and infrared absorption spectra of the CsHSO3, CsDSO3, H3CSO3Na, and Cl3CSO3Na.H2O compounds and Raman spectra of the sulfite solutions have been interpreted by normal coordinate calculations. The C-S stretching force constant for the trichloromethanesulfonate ion obtains an anomalously low value due to steric repulsion between the Cl3C- and -SO3 groups. The S-O stretching force constants were correlated with corresponding S-O bond distances for several oxosulfur species.

摘要

记录了硫 K 边 X 射线吸收近边结构(XANES)光谱,并通过密度泛函理论-跃迁势(DFT-TP)计算评估了 S(1s) 电子激发,以深入了解配位、键合和电子结构。在环境重要的亚硫酸盐(IV)体系中,二氧化硫和亚硫酸钠水溶液中各种物种的 XANES 光谱在不同 pH 值下显示出显著差异。在强酸性(pH < 约 1)的亚硫酸盐水溶液中,XANES 光谱证实水合二氧化硫分子 SO₂(aq) 占主导。理论光谱与气相和乙腈溶液中约 119° 的 OSO 角一致,而在水溶液中氢键作用使该角度减小至约 116°。水合作用也影响亚硫酸根离子 SO₃²⁻ 的 XANES 光谱。在中等 pH(约 4)时,可以区分两种配位异构体,即磺酸根(HSO₃⁻)和亚硫酸氢根(SO₃H⁻)离子,氢原子分别与硫和氧配位,在 298 K 时 HSO₃⁻:SO₃H⁻ 的比例约为 0.28:0.72。在所研究的 275 至 343 K 温度范围内,HSO₃⁻ 的相对含量随温度升高而增加。通过 DFT-TP 计算解释了磺酸根、甲磺酸根、三氯甲磺酸根和三氟甲磺酸根化合物的 XANES 光谱,这些化合物在围绕硫原子的四面体构型中 S-O 键距离都非常相似。它们从硫 K 壳层的主要电子跃迁能量约为 2478 eV。当氢原子或给电子甲基键合到 -SO₃ 基团时,额外的吸收特征相似。对于电负性的三氯甲基(Cl₃C-)和三氟甲基(F₃C-)基团,会发生显著变化,它们强烈影响尤其是硫原子周围π电子的分布。通过对 CsDSO₃ 的中子粉末衍射数据进行 Rietveld 分析,得到氘代磺酸根(DSO₃⁻)离子的 S-D 键距离为 1.38(2) Å。通过正则坐标计算解释了 CsHSO₃、CsDSO₃、H₃CSO₃Na 和 Cl₃CSO₃Na·H₂O 化合物的拉曼和红外吸收光谱以及亚硫酸盐溶液的拉曼光谱。由于 Cl₃C- 和 -SO₃ 基团之间的空间排斥,三氯甲磺酸根离子的 C-S 伸缩力常数异常低。S-O 伸缩力常数与几种含氧硫物种的相应 S-O 键距离相关。

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