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首页> 外文期刊>Journal of Raman Spectroscopy >Dependence on Concentration and Temperature of the Dynamics of SO_4~(2-) in Li_2SO_4, Na_2SO_4 and K_2SO_4 Aqueous Solutions Studied by Raman Spectroscopy
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Dependence on Concentration and Temperature of the Dynamics of SO_4~(2-) in Li_2SO_4, Na_2SO_4 and K_2SO_4 Aqueous Solutions Studied by Raman Spectroscopy

机译:拉曼光谱研究Li_2SO_4,Na_2SO_4和K_2SO_4水溶液中SO_4〜(2-)动力学的浓度和温度依赖性

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摘要

The Raman spectra of the ν_1(SO_4~(2-)) band in aqueous solutions of Li_2SO_4, Na_2SO_4 and K_2SO_4 as a function of concentration at room temperature and for fixed concentrations in the temperature range 5-85℃ were studied. It was found that the molar scattering coefficient for SO_4~(2-) is virtually independent of the concentration and temperature in the studied range. Nevertheless, the v,(SO_4~(2-)) band shows some asymmetry on the high-wavenumber side for Li and Na and on the low-wavenumber side for K, which for these last two cases has not previously been reported. Moreover, the band position seems to be correlated with the sign and amount of the asymmetry as the concentration increases. On the other hand, temperature does not have a great effect on the band profile. In the case of Na and K, there is little narrowing of the band, whereas for Li there is slight broadening and an increase in the asymmetry. Quantitative analysis of these changes was performed using the vibrational correlation function. This was modelled considering the distribution of sulphate oscillators in the aqueous media as a convolution product of an unperturbed distribution by a perturbation function. This last function assumes a feedback mechanism in which the main parameters are the coupling energy and the fraction of the distribution having interactions. The dependence of these parameters and of the Gaussian and Lorentzian contributions to the band profile with concentration and temperature are discussed.
机译:研究了Li_2SO_4,Na_2SO_4和K_2SO_4水溶液在室温下以及在5-85℃温度范围内固定浓度下ν_1(SO_4〜(2-))带的拉曼光谱。发现在研究范围内,SO_4〜(2-)的摩尔散射系数实际上与浓度和温度无关。然而,v,(SO_4〜(2-))谱带在Li和Na的高波数侧和K的低波数侧显示出一些不对称性,这在后两种情况下以前没有报道过。此外,随着浓度的增加,谱带位置似乎与不对称的符号和量相关。另一方面,温度对能带分布没有很大影响。在Na和K的情况下,带几乎没有变窄,而对于Li,则稍微变宽并且不对称性增加。使用振动相关函数对这些变化进行定量分析。考虑到硫酸盐振荡器在水介质中的分布,作为通过扰动函数的无扰动分布的卷积,可以进行建模。最后一个功能采用了一种反馈机制,其中的主要参数是耦合能和具有相互作用的分布比例。讨论了这些参数以及高斯和洛伦兹贡献随浓度和温度对谱带分布的依赖性。

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