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利用拉曼OH/OD伸缩光谱和介电弛豫数据对钠卤化物离子和钾卤化物离子的水化水性质进行比较研究。

Comparative study on the properties of hydration water of Na- and K-halide ions by Raman OH/OD-stretching spectroscopy and dielectric relaxation data.

作者信息

Okazaki Yuichiro, Taniuchi Tetsuo, Mogami George, Matubayasi Nobuyuki, Suzuki Makoto

机构信息

Graduate School of Engineering and ‡Frontier Research Institute for Interdisciplinary Sciences, Tohoku University , Sendai 980-8579, Japan.

出版信息

J Phys Chem A. 2014 Apr 24;118(16):2922-30. doi: 10.1021/jp412804d. Epub 2014 Apr 11.

Abstract

Properties of hypermobile water (HMW) were studied by Raman OH-stretching spectroscopy. Hydration water properties measured by Raman OH-stretching spectra of NaX/KX (X: Cl, Br, I) solutions (0.05-0.2 M) were comparatively analyzed with the data by dielectric relaxation spectroscopy (DRS), NMR, and statistical mechanical studies. The Raman OH-stretching spectra were well-fitted with linear combinations of the spectra of pure water both at the same and the higher temperatures. The fitting analysis determined the "structure temperature" Tstr and mole fraction of the high Tstr water region, giving the hydration number Nhyd, for each electrolyte solution. The determined Tstr was much higher than the solution temperature of 293 K for each tested salt and was higher for larger halide ions, consistent with commonly known "structure-breaking" order Cl < Br < I. No significant differences in Nhyd were observed between NaX and KX and among even halide ion species within the experimental errors. Measured Nhyd values of 25-27 were much greater than the reported numbers by NMR chemical shift and (17)O NMR relaxation studies and comparable to the numbers of hypermobile water reported in the previous DRS studies. The results indicated that the hydration region around NaX or KX measured by the present Raman study was nearly overlapped with the region of HMW by DRS. It was also suggested that differences in the ion size effects on Tstr and the DR frequency resulted from the sensitivity difference to long-range many-body interactions among water molecules. High structure-temperature regions were also detected by the analysis of OH-stretching and OD-stretching bands for 0.2 M NaI in H2O/D2O mixed solvent of 50 mol %, and we found that both OH-stretching and OD-stretching bands have almost equivalent Tstr ≈ 330 K and mole fractions with each other.

摘要

通过拉曼 OH 伸缩光谱研究了超流动性水(HMW)的性质。对 NaX/KX(X:Cl、Br、I)溶液(0.05 - 0.2 M)的拉曼 OH 伸缩光谱所测量的水合水性质,与介电弛豫光谱(DRS)、核磁共振(NMR)以及统计力学研究的数据进行了比较分析。在相同温度和更高温度下,拉曼 OH 伸缩光谱都能很好地用纯水光谱的线性组合进行拟合。拟合分析确定了“结构温度”Tstr 和高 Tstr 水区域的摩尔分数,从而得出每种电解质溶液的水合数 Nhyd。对于每种测试盐,所确定的 Tstr 远高于 293 K 的溶液温度,并且对于较大的卤离子更高,这与众所周知的“结构破坏”顺序 Cl < Br < I 一致。在实验误差范围内,未观察到 NaX 和 KX 之间以及不同卤离子种类之间 Nhyd 有显著差异。所测量的 Nhyd 值为 25 - 27,远大于通过核磁共振化学位移和(17)O 核磁共振弛豫研究报告的数值,并且与先前 DRS 研究中报道的超流动性水的数值相当。结果表明,通过本拉曼研究测量的 NaX 或 KX 周围的水合区域与 DRS 测量的 HMW 区域几乎重叠。还表明,离子尺寸对 Tstr 和 DR 频率的影响差异源于对水分子间长程多体相互作用的敏感度差异。通过对 50 mol%的 H2O/D2O 混合溶剂中 0.2 M NaI 的 OH 伸缩带和 OD 伸缩带进行分析,也检测到了高结构温度区域,并且我们发现 OH 伸缩带和 OD 伸缩带的 Tstr 几乎相等,约为 330 K,且摩尔分数彼此相当。

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