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http://dx.doi.org/10.6564/JKMRS.2017.21.2.067

Role of NH4 and H2O in Tutton Salt (NH4)2M(SO4)2·6H2O (M=Fe and Zn) Single Crystals Studied by 1H and 14N NMR at High Temperatures  

Park, Sung Soo (Analytical Laboratory of Advanced Ferroelectric Crystals, Jeonju University)
Lim, Ae Ran (Analytical Laboratory of Advanced Ferroelectric Crystals, Jeonju University)
Publication Information
Journal of the Korean Magnetic Resonance Society / v.21, no.2, 2017 , pp. 67-71 More about this Journal
Abstract
At high temperature, the roles of $NH_4$ and $H_2O$ in $(NH_4)_2Fe(SO_4)_2{\cdot}6H_2O$ and $(NH_4)_2Zn(SO_4)_2{\cdot}6H_2O$ single crystals were investigated using a pulse NMR spectrometer. Temperature was shown to have a significant influence, causing changes in the deformation of $NH_4$ and $H_2O$. From the $^1H$ NMR and $^{14}N$ NMR spectrum, the forms of environment surrounding $^{14}N$ in $NH_4$ groups is more important than the loss of $H_2O$ groups. NMR studies indicate that $NH_4{^+}$ ions in Tutton salts play an important role in the changes of the crystal structure at high temperatures.
Keywords
Tutton salts; $(NH_4)_2Fe(SO_4)_2{\cdot}6H_2O$; $(NH_4)_2Zn(SO_4)_2{\cdot}6H_2O$; Thermodynamic property; NMR;
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1 D. Marinova, M. Georgiev, and D. Stoilova, Cryst. Res. Technol. 45, 637 (2010)   DOI
2 M. Georgiev, D. Marinova, and D. Stoilova, Vib. Spectrosc. 53, 233 (2010)   DOI
3 H. I. Yoon and A. R. Lim, J. Kor. Magn. Reson. Soc. 19, 119 (2015)   DOI
4 J.-J. Yi, W.-J. Kim, J.-K. Rhee, J. Lim, B.-J. Lee, and W. S. Son, J. Kor. Magn. Reson. Soc. 21, 26 (2016)
5 G. M. Brown and R. Chidambaram, Acta Crystallogr. B 25, 676 (1969)
6 E. N. Maslen, S. C. Ridout, K. J. Watson, and F. H. Moore, Acta Crystallogr. C 44, 409 (1988)   DOI
7 G. Ganesh, A. Ramadoss, P. S. Kannan, and A. SubbiahPandi, J. Therm. Anal. Calorim. 112, 547 (2013)   DOI
8 A. R. Lim, J. Therm. Anal. Calorim. 109, 1619 (2012)   DOI
9 A. R. Lim, J. Therm. Anal. Calorim. 114, 699 (2013)   DOI
10 W. Y. Kim and A. R. Lim, J. Therm. Anal. Calorim. 116, 779 (2014)   DOI
11 A. Abragam, The Principles of Nuclear Magnetism, Oxford University press (1961)
12 F. Gronvold, and K. K. Meisingset, J. Chem. Thermodyn. 14, 1083 (1982)   DOI
13 A. R. Lim, and J. H. Lee, Phys. Status Solidi B 247, 1242 (2010)
14 M. J. Riley, M. A. Hitchman, and A. W. Mohammed, J. Chem. Phys. 87, 3766 (1987)   DOI
15 A. Kirfel, H. Klapper, W. Schafer, and F. Schwabenlander, Z. Kristallogr. 213, 456 (1998)
16 S. K. Hoffmann, J. Goslar, W. Hilczer, M. A. Augustyniak, and M. Marciniak, J. Phys. Chem. A 102, 1697 (1998)   DOI
17 D. Marinova, M. Georgiev, and D. Stoilova, J. Mol. Struct. 929, 67 (2009)   DOI
18 D. Marinova, M. Georgiev, and D. Stoilova, Solid State Sci. 12, 765 (2010)   DOI