Poly-thermal solubility and complex thermal analysis of water-soluble tris-malonate of light fullerene – C60[=C(COOH)2]3
Аннотация
The poly-thermal solubility of the tris-malonate C60[=C(COOH)2]3 – H2O binary system was investigated from 20 – 80 ◦C with the help of the method of isotherm saturation in ampoules. Concentration of tris-malonate C60[=C(COOH)2]3 in solutions was determined by light absorption at 330 nm. A diagram of the solubility is non-monotonic, consisting of 2 branches, which correspond to 2 different crystal-hydrates of C60[=C(COOH)2]3 and one non-variant point, corresponding to the saturation both crystal-hydrates. Complex thermal analysis of C60[=C(COOH)2]3 crystal hydrates, in equilibrium with a saturated aqueous solution at room temperature, was performed from 20 – 600 ◦C. Consecutive effects of the losses of C=O and C=O + H2O were determined.
Об авторах
K. SemenovРоссия
N. Charykov
Россия
A. Kritchenkov
Россия
I. Cherepkova
Россия
O. Manyakina
Россия
D. Tyurin
Россия
A. Shestopalova
Россия
V. Keskinov
Россия
K. Ivanova
Россия
N. Ivanova
Россия
D. Letenko
Россия
V. Nikitin
Россия
E. Fokina
Россия
I. Pestov
Россия
A. Netrusov
Россия
Список литературы
1. K.N. Semenov, N.A. Charykov, A.S. Kritchenkov, et al. Synthesis and identification water-soluble trismalonate of light fullerene – C60[=C(COOH)2]3. Nanosystems: Physics, Chemistry, Mathematics, 5 (2), P. 315–319 (2014).
2. K.N.Semenov, N.A.Charykov, A.S.Kritchenkov et al. Volume properties of water solutions and refraction at 25 ◦C water soluble tris-malonate of light fullerene —C60[=C(COOH)2]3. Nanosystems: Physics, Chemistry, Mathematics, 5 (3), P. 427–434 (2014).
3. I.Lamparth, A.Hirsch. Water-soluble malonic acid derivatives of C60 with a defined three-dimensional structure. J. Chem. Soc Chem. Commun., P. 1727–1728 (1994).
4. L.B.Piotrovskiy, O.I.Kiselev. Fullerenes in biology. Rus. S-Petersburg, (2006) 334 pp.
5. D.Heymann. Solubility of C60 in alcohols and alkanes. Carbon, 34 (5), P. 627–631 (1996).
6. M.T.Beck, G.Mandi. Solubility of C60. Fullerene science and technology, 5, P. 291–310 (1997).
7. M.V.Korobov, A.L.Smith. Solubility of Fullerenes. Fullerenes: Chemistry, Physics and Technology, John Wiley & Sons, New York, P. 53–59 (2000).
8. K.N.Semenov, N.A.Charykov, V.A.Keskinov, et al. Solubility of light Fullerenes in Organic Solvents. J. Chem. Eng. Data, 55, P. 13–36 (2010).
9. D. Heymann. Solubility of fullerenes C60 and C70 in seven normal alcohols and their deduced solubility in water. Fullerene Science and Technology, 4 (3), P. 509–515 (1996).
10. D. Heymann. Solubility of fullerenes C60 and C70 in water. Lunar and Planetary Science, 27, P. 543–544 (1996).
11. K.N. Semenov, N.A. Charykov, V.A. Keskinov. Synthesis and Identification. Properties of Fullerenol Water Solutions. J. Chem. Eng. Data, 56, P. 230–239 (2011).
12. K.N. Semenov, N.A Charykov. Solubility of light fullerenes and fullerenol in biocompatible with human beings solvents. Chapter in Handbook: Grapes: Cultivation, Varieties and Nutritional Uses. Nova Sciences Publishers, Inc., Editor R.P.Murphy et al., P. 1–48 (2011).
13. K.N. Semenov, N.A. Charykov. Phase Equilibria in the Fullerene-Containing Systems. Handbook on Fullerene: Synthesis, Properties and Applications, Editor R.F.Verner, C.Benvegny, P. 1–91 (2012).
14. Rus. Technical Conditions (TU) 6-09-4921-80. CAS Number 141-95-7.
Рецензия
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For citation:
Semenov K.N., Charykov N.A., Kritchenkov A.S., Cherepkova I.A., Manyakina O.S., Tyurin D.P., Shestopalova A.A., Keskinov V.A., Ivanova K.V., Ivanova N.M., Letenko D.G., Nikitin V.A., Fokina E.L., Pestov I.A., Netrusov A.O. Poly-thermal solubility and complex thermal analysis of water-soluble tris-malonate of light fullerene – C60[=C(COOH)2]3. Nanosystems: Physics, Chemistry, Mathematics. 2014;5(3):435-440.