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QUADRUPOLE COUPLING CONSTANT AND ELECTRONIC STRUCTURE OF COMPOUNDS ЭХ3

https://doi.org/10.30724/1998-9903-2018-20-1-2-122-127

Abstract

For the series of molecules type ЭХ3 (Э = N, As, Sb; X = F, Cl, Br, J) obtained quantitative relations between the values of the quadrupole coupling constants e2Qq and parameters J and μэ3-, characterizing the relative magnitude of the spatial redistribution of the valence electrons of ions Э3- at varying Э and X. The difference observed dependences e2Qq off the dipole moments of the ions μэ3-, to the molecules in the gas and solid phases explained due to the influence of the crystal lattice field. Explored the dependence values of the NQR frequencies ν off the dipole moments of the ions μэ3-

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About the Authors

K. F. Khalitov
Kazan State Power Engineering University
Russian Federation

Karim F. Khalitov - senior lecturer



V. F. Novikov
Kazan State Power Engineering University
Russian Federation

Vyacheslav F. Novikov – professor



References

1. Khalitov F.G., Khalitov K.F. O zakonomernostyakh izmenenii valentnykh uglov i potentsialov ionizatsii v ryadakh molekul vida EKh3 i EKh2. Politematicheskii setevoi elektronnyi nauchnyi zhurnal Kubanskogo gosudarstvennogo agrarnogo universiteta. 2014. No. 95. P. 184-203. http://ej.kubagro.ru/2014/01/pdf/56.pdf .

2. Khalitov F.G., Khalitov K.F. O polyarizatsionnykh effektakh v ryadakh molekul vida EKh3. Politematicheskii setevoi elektronnyi nauchnyi zhurnal Kubanskogo gosudarstvennogo agrarnogo universiteta. 2014. No. 99. P. 137-148. http://ej.kubagro.ru/2014/05/pdf/18.pdf .

3. Khalitov K.F., Novikov V.F., Khalitov F.G.,//Russian Journal of General Chemistry, 2016, V. 86, No. 10, p. 2288. DOI: 10.1134/S1070363216100078

4. Khalitov K.F. Metod otsenki velichin intensivnostei polos pogloshcheniya v IK- spektrakh molekul vida EKh3. Izvestiya vysshikh uchebnykh zavedenii. Problemy energetiki. 2017. No. 9-10. P. 138-144.

5. Pentin Yu.A., Vilkov L.V. Fizicheskie metody issledovaniya v khimii. M.: Izd-vo Mir, 2003. 684 p.

6. Semin G.K., Babushkina G.G., Yakobson G.G. Primenenie yadernogo kvadrupol'nogo rezonansa v khimii. L.: Khimiya, 1972. 536 p.

7. Kravchenko E.A., Kuznetsov N.T., Novotortsev V.M. Yadernyi kvadrupol'nyi rezonans v koordinatsionnoi khimii. M.: KRASAND. 2014. 272 p.

8. Drago R. Fizicheskie metody v khimii. M.: Izd-vo Mir. 1981. Vol 1, 424 p.; Vol 2. 456 p.

9. Benuell K. Osnovy molekulyarnoi spektroskopiyu. M.: Izd-vo Mir. 1985. 384 p.

10. Mustaev S.A., Schast'ev P.V. Vliyanie geometricheskikh i elektronnykh faktorov na kvadrupol'nye konstanty χN .// Zhurnal strukturnoi khimii. 1987. Vol 28, No. 5. P. 36-40.

11. Poleshchuk O.Kh. Issledovanie elektronnoi struktury galogenidov VA gruppy // Zhurn. neorg. khimii. 1985. V. 30. No. 12. P. 3016-3018.

12. Chihara H., Nakamura N. Nuclear Quadrupole Resonance Spectroscopy Data // LondoltBornstein. Numerical Data and Functional Relationships in Science and Technology. Group III: Crystal and Solid State Physics. 1989. V. 20. Subvolume C. Berlin e.a.: Springer.

13. Gur'yanova E.N., Gol'dshtein I.P., Romm I.P. Donorno-aktseptornaya svyaz'. M.: Khimiya,1973. 394 p.

14. Hewitt R.R., MacLaughlin D. E. Nuclear Spin Relaxation in the Quadrupole Spectrum of Antimony Metal // Journal of Magnetis Resonance. 1978. V. 30. P. 483-489.


Review

For citations:


Khalitov K.F., Novikov V.F. QUADRUPOLE COUPLING CONSTANT AND ELECTRONIC STRUCTURE OF COMPOUNDS ЭХ3. Power engineering: research, equipment, technology. 2018;20(1-2):122-127. (In Russ.) https://doi.org/10.30724/1998-9903-2018-20-1-2-122-127

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ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)