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Investigations into the Molecular Relaxation Processes in Lithium and Sodium Perchlorates by the Raman Scattering Method

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Abstract

The molecular relaxation processes in crystalline lithium and sodium perchlorates are investigated in the region of totally symmetric ν1(A) ClO4 -anion oscillations by Raman light scattering spectroscopy. It is demonstrated that the reorientation in LiClO4 and NaClO4 represents an activation process. A premelting phase is detected for sodium perchlorate.

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REFERENCES

  1. A.R. Aliev, A.I. Akaeva, and A.Zh. Gadzhiev, Zh.Prikl.Spektrosk., 65, No.6, 931–934 (1998).

    Google Scholar 

  2. N.A. Chumaevskii, T.A. Ivanova, and V.P. Tarasov, Zh.Neorg.Khim., 37, No.9, 2064–2070 (1992).

    Google Scholar 

  3. A.I. Efimov, L.P. Belorukova, I.V. Vasil'kova, and V.P. Chechev, Properties of Inorganic Compounds: A Handbook [in Russian], Khimiya, Leningrad (1983).

    Google Scholar 

  4. E.Yu. Tonkov, Phase Diagrams of Compounds at High Pressure [in Russian], Nauka, Moscow (1983).

    Google Scholar 

  5. E.K. Galanov and I.A. Brodskii, Fiz.Tverd.Tela, 10, No.11, 3392–3398 (1968).

    Google Scholar 

  6. M.M. Gafurov, I.R. Akhmedov, and A.R. Aliev, in: Thermal and Physical Properties of Individual Substances and Mixtures [in Russian], Makhachkala (1998), pp.145–156.

  7. M.M. Gafurov and A.R. Aliev, Rasplavy, No.3, 35–44 (1997).

    Google Scholar 

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Aliev, A.R., Akaeva, A.I. & Gadzhiev, A.Z. Investigations into the Molecular Relaxation Processes in Lithium and Sodium Perchlorates by the Raman Scattering Method. Russian Physics Journal 43, 1023–1025 (2000). https://doi.org/10.1023/A:1011359831436

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  • DOI: https://doi.org/10.1023/A:1011359831436

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