• Spectroscopy and Spectral Analysis
  • Vol. 29, Issue 12, 3315 (2009)
XIAO Han-shuang*, WANG Liang-yu, and ZHANG Yun-hong
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    XIAO Han-shuang, WANG Liang-yu, ZHANG Yun-hong. Confocal Raman Study on ZnSO4 Droplets in the Efflorescence Process[J]. Spectroscopy and Spectral Analysis, 2009, 29(12): 3315 Copy Citation Text show less

    Abstract

    Confocal Raman technique was used to investigate the structure changes of the ZnSO4droplets deposited on Teflon substrate in the efflorescence process at the molecular level. Upon decreasing the relative humidity(RH), the symmetric stretching band(ν21/sub>-SO)of ZnSO4droplet blue shifted from 981 cm-1gradually to 987,998 and 1008 cm-1, respectively, indicating that the free SO ion associates with Zn2+ ion as the solution concentration increases and forms various contact ion pairs (CIPs), i. e., monodentate,bidentate and complicated multidentate chain-structured or web-structured CIPs. Accordingly, two obvious transition points were also observed in the hygroscopic curveof ZnSO4droplet, implying the structure transformations in thedroplet. In order to obtain the information about the contents and evolutions of variouscomponents in the droplets, curve fitting technique was used to extract the components at positions of 981,987,998 and 1008 cm-1in the spectral range of 945-1065 cm-1re-presenting the free SO ion, monodentate, bidentate and complicated CIPs, respectively. The results indicated that the main component in droplets was free hydrated SO ion at high RHs. With decreasing the RH, monodentate and bidentate CIPs were formed by Zn2+ and SO and achieved their highest contents at RHs of 66% to 34%, respectively. Further decreasing the RH, the monodentate and bidentate CIPs gradually changed into multidentate chain-structured CIPs or complicated CIPs webs, which became the main components in supersaturated ZnSO4 droplets as the RH decreased below 34%.
    XIAO Han-shuang, WANG Liang-yu, ZHANG Yun-hong. Confocal Raman Study on ZnSO4 Droplets in the Efflorescence Process[J]. Spectroscopy and Spectral Analysis, 2009, 29(12): 3315
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