Synthesis and Investigation of Zinc(Ii) Nitrate Complexes With Thiadiazole–1,3,4 Derivatives

Main Article Content

Husenov Kakhramon Shayimovich
Navruzova Mashhura Bakhtiyor kizi
Bakhronova Ozoda Zhuraevna

Abstract

This article presents methods for the synthesis of new complex compounds of zinc(II) with 2-aminothiadiazole-1,3,4 (AT) structure [Zn(AT)3(NO3)2] and 2-amino-5-methylthiadiazole-1,3,4 (AMT) structure [Zn(AMT)3(NO3)2]. The structure of the obtained complexes was established by the methods of elemental and X-ray diffraction analyses. In complexes around the Zn(II) ion, three nitrogen atoms of thiadiazole cycles and two oxygen atoms of two nitrate anions are coordinated in the equatorial plane in axial positions.

Article Details

Section

Articles

How to Cite

Shayimovich, H. K., Bakhtiyor kizi , N. M., & Zhuraevna , B. O. (2024). Synthesis and Investigation of Zinc(Ii) Nitrate Complexes With Thiadiazole–1,3,4 Derivatives. Excellencia: International Multi-Disciplinary Journal of Education (2994-9521), 2(10), 181-186. https://doi.org/10.5281/

References

Ana C.M. O. Lima, Ana L.R.Silva, Jorge M. Goncalves, Maria D.M.C. Ribeiro da Silva Thermodynamic study on the relative stability of 2-amino-1,3,4-thiadiazole and two alkyl-substituted aminothiadiazoles // Journal of the Thermal Analysis and Calorimetry. - 2024. https://doi.org/10.1007/s10973-024-13498-6

Luís M.T. Frija, Armando J.L. Pombeiro, Maximilian N. Kopylovich Coordination chemistry of thiazoles, isothiazoles and thiadiazoles // Coordination Chemistry Reviews. – 2015. – V. 308. – №2. – P. 32-55. (https://doi.org/10.1016/j.ccr.2015.10.003)

Umirov F.E., Nomozova G.R., Kodirov S.M. Solubility diagrams of the calcium chlorate-4-amino-1,2,4-triazole-water system // Universum: technical sciences: electron. scientific magazine 2021. 3(84). URL: - P.74-78. https://7universum.com/ru/tech/archive/item/11433.

Umirov F.E., Khudoiberdiev F.I., Tukhtaev S.T., Murodova S.D. Preparation of defoliants based on 4-amino-1,2,4-triazole with sodium and magnesium chlorates // Bulletin of Science and Education. – 2018. - T.2. - No. 3(39). - pp. 14-16.

Umirov F.E. Preparation of a defoliant based on chlorates of organic compounds // Monograph. – 2019. – Bukhara. – ed. "Durdona." – 139 p.

Худойбердиев Ф.И. и др. Агрохимическая эффективность дефолиантов на основе хлоратов магния и натрия //ВЕСТНИК. – 2019. – С. 133.

Khudoiberdiev, F. I., Murodova, S. D., Takhirova, N. B., & Khusenov, K. Sh. (2018). Study of the process of obtaining defoliants. Science and education: preserving the past, creating the future (pp. 13-16).

Umarov B.B., Khusenov K.Sh., Ishankhodzhaeva M.M., Parpiev N.A., Gaybullaev Kh.S. New hexadentate ligands based on salicylaldehyde dihydrazones // Zhurnal organicheskoi khimii. – 1996. – T.32. – № 1. – С. 93–95.

Khusenov K.Sh. Complex compounds of some 3d metals with derivatives of 1,3,4-thiadiazoles and salicylaldimines // Abstract of the dissertation for the degree of candidate of chemical sciences. - Tashkent. – 1998. – 22 p.

Mori A., Sekiguchi A., Masui K. at. all. Facile Synthesis of 2,5-Diarylthiazoles via Palladium-Catalyzed Tandem C-H Substitutions. Design of Tunable Light Emission and Liquid Crystalline Characteristics // J. Am. Chem. Soc. 2003, 125, 1700-1701. (doi: 10.1021/ja0289189.)

Umarov B. B. et al. Synthesis and study of crystal structure of the product of combined condensation of 2-amino-5-ethyl-1, 3, 4-thiadiazole with salycilic aldehyde and acetylacetone //Russian journal of organic chemistry. – 1999. – Т. 35. – №. 4. – С. 599-602.

Khusenov K.Sh. and others. Crystal and molecular structure of the complex of zinc (II) nitrate with 2-amino-1,3,4-thiadiazole // “Journal of Inorganic Chemistry”. - 2000. - T.43. - № 12. - S. 1976-1981.

Khusenov K.Sh., Aliev T.B., Bakhronova O.Zh. Synthesis and structure of zinc (II) complexes with 2-aminothiadiazole derivatives-1, 3, 4 // International Journal of Advanced Technology and Natural Sciences. - 2023. - T.4. - No. 1. - P. 45-58.

Yue Wu, Yongshu Xie, Qiong Zhang at. all. Quantitative Photoswitching in Bis(dithiazole)ethene Enables Modulation of Light for Encoding Optical Signals // Angew. Chem. Int. Ed. – 2014. – V. 53. – Issue 8. – P. 2090-2094. (https://doi.org/10.1002/anie.201309915)

Bo-Yeon Kim, Hong-Seok Kim, Aasif Helal. A fluorescent chemosensor for sequential recognition of gallium and hydrogen sulfate ions based on a new phenylthiazole derivative // Sensors and Actuators B: Chemical. – 2015. – V. 206. – P. 430-434. (https://doi.org/10.1016/j.snb.2014.09.071)

Thorsten Bach, Stefan Heuser. Synthesis of 2-(o-hydroxyaryl)-4-arylthiazoles by regioselective Pd(0)-catalyzed cross-coupling // Tetrahedron Letters. – 2000. – V. 41, Issue 11. – P. 1707-1710. (https://doi.org/10.1016/S0040-4039(00)00018-6)

Shaik Karamthulla, Suman Pal, Md. Nasim Khan and Lokman H. Choudhury. “On-water” synthesis of novel trisubstituted 1,3-thiazoles via microwave-assisted catalyst-free domino reactions // RSC Advances. – Issue 71. – 2014. . – DOI (https://doi.org/10.1039/C4RA06239F)

Khusenov, K. Sh., Umarov, B. B., Bakhronova, O. J., & Aliev, T. B. (2022). Studying the structure of some intermediate metal ion complexes based on 2-Aminothiadiazole-1, 3, 4 derivatives. Chemistry and Medicine: From Theory to Practice (pp. 40-44).

Atmaram U.A., Roopan S.M. Biological activity of oxadiazole and thiadiazole derivatives. // Appl. Microbiol. Biotechnol. – 2022. V.106. - P.3489–3505.

Szeliga M. Thiadiazole derivatives as anticancer agents. // Pharmacol. Rep. – 2022. – V.72. P. 1079–1100.

Rabie A.M., Eltayb W.A. Potent dual polymerase/exonuclease inhibitory activities of antioxidant aminothiadiazoles against the COVID-19 omicron virus: a promising in silico/in vitro repositioning research study. // Mol Biotechnol. – 2023. V. 66. – P. 592–611.

Khusenov K.Sh., Aliev T.B., Bakhronova O.Zh. Crystal and molecular structure, Hirschfeld surface analysis of zinc(II) bromide complex with 2-aminothiadiazole-1, 3, 4 // International Journal of Advanced Technology and Natural Sciences. - 2022. - V.3. - №4. - P. 25-35.

Bentiss, F., Lagrenée, M., Vezin, H., Wignacourt, J. P., & Holt, E. M. (2004). Syntheses and crystal structures of two mononuclear Zn (II) complexes with the 2, 5-bis (2-pyridyl)-1, 3, 4-thiadiazole ligand. Polyhedron, 23(11), 1903-1907.

Ali, K. O., Mohamad, H. A., Gerber, T., & Hosten, E. (2022). Zinc (II) Complex Containing Oxazole Ring: Synthesis, Crystal Structure, Characterization, DFT Calculations, and Hirshfeld Surface Analysis. Acta Chimica Slovenica, 69(4).

Khusenov K.Sh., Umarov B.B., Ishankhodzhaeva M.M., Parpiev N.A., Talipov S.A., Ibragimov B.T. Crystal structure of 2-amino-l,3,4-thiadiazole and its Zn(II) complex // Russian Journal of Coordination Chemistry. – 1997. – T.23. – № 8. – С. 555–559.

Ishankhodzhaeva M.M., Khusenov K.Sh., Umarov B.B., Parpiev N.A., Aleksandrov G.G. Crystal structure of a complex of Zinc iodide with 2-amino-l,3,4-thiadiazole // Russian Journal of Inorganic Chemistry. – 1998. – № 43(11). – С. 1709–1711.

Ishankhodzhaeva M.M., Umarov B.B., Khusenov K.Sh., Parpiev N.A. Effect of the nature of acidoligand on the geometric structure of zinc (II)-2-amino-1,3,4-thiadiazole complexes // Zhurnal obshchei khimii. - 1998. - Т.68. - №8. - С. 1368-1373.

Ishankhodzhaeva M.M., Umarov B.B., Kadyrova Sh.A., Parpiev N.A., Makhkamov K.K., Talipov S.A. Crystal and molecular structure of 2-amino-5-ethyl-1,3,4-thiadiazole and its complex with zinc(II) nitrate // Journal of General Chemistry. - 2000. – V. 70. - № 7. - pp. 1187-1193.

Khusenov K.Sh., Umarov B.B., Ishankhodzhaeva M.M., Parpiev N.A., Talipov S.A., Ibragimov B.T. Crystal and molecular structure of a complex of zinc(II) nitrate with 2-amino-l,3,4-thiadiazole // Russian Journal of Inorganic Chemistry. – 1998. – № 43(12). – С. 1976–1981.

Khusenov K.Sh., Umarov B.B., Turgunov K.K., Aliev T.B., Ibragimov B.T. Synthesis and structure of the complex of zinc(II) nitrate with 2-amino-5-methylthiadiazole-1,3,4 // Reports of the Academy of Sciences of the Republic of Uzbekistan. - 2023. - № 1. - P. 72-80.

Ganiev, B. S., Khusenov, K. S., & Umarov, B. B. Crystal Structure and Analysis Hirshfeld Surface of the Zinc (II) Bromide Complex with 2-Aminothiadiazole-1, 3, 4//Available at SSRN 4384289.

Khusenov, K. Sh., Aliev, T. B., & Bakhronova, O. Zh. (2022). Crystal and molecular structure, Hirschfeld surface analysis of zinc(II) bromide complex with 2-aminothiadiazole-1, 3, 4. International Journal of Advanced Technology and Natural Sciences, 3(4), 25-35.

Khusenov, K. S., Umarov, B. B., Turgunov, K. K., Bakhranova, O. Z., Aliev, T. B., & Ibragimov, B. T. (2024). Zinc (II) complexes with thiadiazole derivatives-1, 3, 4. Žurnal neorganičeskoj himii, 69(2), 193-202.

Similar Articles

You may also start an advanced similarity search for this article.