Layered Coordination Polymers Based on the Cluster Complexes [Re6Q8(CN)6]4– (Q = S or Se) and Dimeric Cations {(Ag(Dppe))2(μ-Dppe)}2+
- Авторлар: Litvinova Y.M.1, Gaifulin Y.M.1, Sukhikh T.S.1, Brylev K.A.1, Mironov Y.V.1
-
Мекемелер:
- Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
- Шығарылым: Том 50, № 10 (2024)
- Беттер: 708-721
- Бөлім: Articles
- URL: https://cardiosomatics.ru/0132-344X/article/view/667658
- DOI: https://doi.org/10.31857/S0132344X24100072
- EDN: https://elibrary.ru/LPNGRC
- ID: 667658
Дәйексөз келтіру
Аннотация
The reactions of salts of cluster anions [Re6Q8(CN)6]4– with the [Ag(CN)2]– dicyanoargentate anion in the presence of 1,2-bis(diphenylphosphino)ethane are studied. Two new coordination polymers, [{(Ag(Dppe))2 (µ-Dppe)}2{Re6S8(CN)6}]⋅H2O (I) and [{(Ag(Dppe))2(µ-Dppe)}2{Re6Se8(CN)6}]0,85[{(Ag(Dppe))(Ag(DppeSe))(µ-Dppe)}2{Re6Se8(CN)6}]0,15 (II), are prepared by the solvothermal synthesis. The XRD study of single crystals of the compounds (CIF files CCDC nos. 2341356 (I) and 2341355 (II)) shows their layered structures. The XRD study of crystalline powders of the compounds shows that the synthesis of compound II leads to the formation of two crystalline phases, one of which is isostructural to compound I. The luminescence parameters of the solid-state compounds (quantum yields, emission lifetimes) resemble the parameters of other coordination polymers based on the [Re6Q8(CN)6]4– ions.
Негізгі сөздер
Толық мәтін

Авторлар туралы
Yu. Litvinova
Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
Email: yuri@niic.nsc.ru
Ресей, Novosibirsk
Ya. Gaifulin
Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
Email: yuri@niic.nsc.ru
Ресей, Novosibirsk
T. Sukhikh
Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
Email: yuri@niic.nsc.ru
Ресей, Novosibirsk
K. Brylev
Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
Email: yuri@niic.nsc.ru
Ресей, Novosibirsk
Yu. Mironov
Nikolaev Institute of Inorganic Chemistry of the Siberian Branch of the Russian Academy of Sciences
Хат алмасуға жауапты Автор.
Email: yuri@niic.nsc.ru
Ресей, Novosibirsk
Әдебиет тізімі
- Sheldon J.C. // J. Chemi. Soc. (Resumed). 1962. P. 410.
- McCarley R.E. // Brown T.M., Inorg. Chem. 1964. Vol. 3. № 9. P. 1232.
- Kuhn P.J., McCarley R.E. // Inorg. Chem. 1965. Vol. 4. № 10. P. 1482.
- Spangenberg M. Bronger W. //Angew. Chem. Int. Ed. 1978. Vol. 17. № 5. P. 368.
- Robin M., Dumait N., Amela-Cortes M., et al. // Chem. Eur. J. 2018. Vol. 24. № 19. P. 4825.
- Sokolov M.N., Brylev K.A., Abramov P.A., et al. // Eur. J. Inorg. Chem. 2017. Vol. 2017. № 35. P. 4131.
- Muravieva V.K., Gayfulin Y.M., Ryzhikov M.R., et al. // Dalton Trans. 2018. Vol. 47. № 10. P. 3366.
- Vorotnikova N.A., Vorotnikov Y.A., Shestopalov M.A. // Coord. Chem. Rev. 2024. Vol. 500. №, P. 215543.
- Kirakci K., Shestopalov M.A., Lang K. // Coord. Chem. Rev. 2023. Vol. 481. P. 215048.
- Nguyen N.T.K., Lebastard C., Wilmet M., et al. // Sci.Technol. Adv. Mater. 2022. Vol. 23. № 1. P. 547.
- Yoshimura T., Ishizaka S., Sasaki Y., et al. // Chem. Lett. 1999. Vol. 28. № 10. P. 1121.
- Ларина Т.В., Икорский В.Н., Васенин Н.Т. и др. // Коорд. химия. 2002. Т. 28. № 8. С. 591.
- Litvinova Y.M., Gayfulin Y.M., Kovalenko K.A., et al. // Inorg. Chem. 2018. Vol. 57. № 4. P. 2072.
- Litvinova Y.M., Gayfulin Y.M., Van Leusen J., et al. // Inorg. Chem. Front. 2019. Vol. 6. № 6. P. 1518.
- Ulantikov A.A., Gayfulin Y.M., Sukhikh T.S., et al. // J. Struct. Chem. Engl. Tr. 2021. Vol. 62. № 7. P. 1009.
- Naumov N.G., Virovets A.V., Sokolov M.N., et al. // Angew. Chem. Int. Ed. 1998. Vol. 37. № 13-14. P. 1943.
- Naumov N.G., Virovets A.V., Artemkina S.B., et al. // J. Solid State Chem. 2004. Vol. 177. № 6. P. 1896.
- Artemkina S.B., Naumov N.G., Virovets A.V., et al. // Inorg. Chem. Commun. 2001. Vol. 4. № 8. P. 423.
- Niu G.-H., Wentz H.C., Zheng S.-L., Campbell. M.G. // Inorg. Chem. Commun. 2019. Vol. 101. P. 142.
- Medici S., Peana M., Crisponi G., et al. // Coord. Chem. Rev. 2016. Vol. 327−328. P. 349.
- Hamze R., Shi S., Kapper S.C., et al. // J. Am. Chem. Soc. 2019. Vol. 141. № 21. P. 8616.
- Kakizoe D., Nishikawa M., Degawa T., Tsubomura T. // Inorg. Chem. Front. 2016. Vol. 3. № 11. P. 1381.
- Romanov A.S., Jones S.T.E., Yang L., et al. // Adv. Opt. Mate. 2018. Vol. 6. № 24. P. 1801347.
- Lin Y.-Y., Lai S.-W., Che C.-M., et al. // Inorg. Chem. 2005. Vol. 44. № 5. P. 1511.
- Schmidbaur H., Schier A. // Angew. Chem. Int. Ed. 2015. Vol. 54. № 3. P. 746.
- Wing-Wah Yam V., Kam-Wing Lo. K., et al. // Coord. Chem. Rev. 1998. Vol. 171. P. 17.
- Tsukuda T., Kawase M., Dairiki A., et al. // Chem. Commun. 2010. Vol. 46. № 11. P. 1905.
- Chen J., Teng T., Kang L., et al. // Inorg. Chem. 2016. Vol. 55. № 19. P. 9528.
- Osawa M., Hashimoto M., Kawata I., Hoshino M. // Dalton Trans. 2017. Vol. 46. № 37. P. 12446.
- Artem’ev A.V., Shafikov M.Z., Schinabeck A., et al. // Inorg. Chem. Front. 2019. Vol. 6. № 11. P. 3168-3176.
- Litvinova Y.M., Gayfulin Y.M., Sukhikh T.S., et al. // Molecules. 2022. Vol. 27. № 22. P. 7684.
- Naumov N.G., Virovets A.V., Podberezskaya N.V., Federov V.E. // Zh. Strukt. Khim. 1997. № 5. P. 1018.
- Mironov Y.V., Virovets A.V., Fedorov V.E., et al. // Polyhedron. 1995. Vol. 14. № 20. P. 3171.
- Sheldrick G.M. et al. // Acta Crystallogr. A. 2015. Vol. 71. P. 3.
- Sheldrick G. et al. // Acta Crystallogr. C. 2015. Vol. 71. № 1. P. 3.
- Dolomanov O.V., Bourhis L.J., Gildea R.J., et al. // Appl. Crystallogr. 2009. Vol. 42. № 2. P. 339.
- Zhao Q., Freeman J.L., Wang J., et al. // Inorg. Chem. 2012. Vol. 51. № 4. P. 2016.
- Canales S., Villacampa M.D., Laguna A., Gimeno M.C. // J. Organomet. Chem. 2014. Vol. 760. P. 84.
- Sekar P., Ibers J.A., et al. // Inorg. Chim. Acta. 2001. Vol. 319. № 1. P. 117.
- Effendy, Di Nicola C., Nitiatmodjo M., et al. // Inorg. Chim. Acta. 2005. Vol. 358. № 3. P. 73547.
- Huahui Y., Lansun Z., Yunjie X., Qianer Z. // Chin. J. Inorg. Chem. 1992. Vol. 8. №, P. 65.
- Fournier E., Sicard S., Decken A., Harvey. P.D. // Inorg. Chem. 2004. Vol. 43. № 4. P. 1491.
- Wang Y.-F., Cui Y.-Z., Li Z.-F., et al. // Chin. J. Struct. Chem. 2017. Vol. 36. P. 812.
- Zhang Y.-R., Wang M.-Q., Cui Y.-Z., et al. // Chin. J. Inorg. Chem. 2015. Vol. 31. P. 2089.
- Wei X., Xu C., Li H., et al. // Chem. Sci. 2022. Vol. 13. № 19. P. 5531.
- Gao S., Li Z.-F., Liu M., et al. // Polyhedron. 2014. Vol. 83. P. 10.
- Harker C.S.W., Tiekink E.R.T. // J. Coord. Chem. 1990. Vol. 21. № 4. P. 287.
- Healy P.C., Loughrey B.T., Williams M.L. // Aust. J. Chem. 2012. Vol. 65. P. 811.
- Lin S., Li. Y., Cui Y.-Z., et al. // Chin. J. Inorg. Chem. 2016. Vol. 32. P. 2165.
- Chee C.F., Lo K.M., Ng S.W. // Acta Crystallogr. E. 2003. Vol. 59. № 5. P. m273.
- Teo Y.Y., Lo. K., Ng S. // Acta Crystallogr. E. 2008. Vol. 64. P. m819.
- Teo Y.Y., Lo K., Ng. S. // Acta Crystallogr. E. 2007. Vol. 63. №, P. M1365-M1367.
- Shafaei-Fallah M., Anson C.E., Fenske D., Rothenberger A. // Dalton Trans. 2005. Vol., № 13. P. 2300.
- Kühnert J., Hahn H., Rüffer T., et al. // J. Organomet. Chem. 2013. Vol. 725. P. 60.
- Li L.-L., Ren Z.-G., Wang J., et al. // J. Mol. Struct. 2008. Vol. 886. № 1. P. 121.
- Wang X.-J., Langetepe T., Fenske D., Kang. B.-S. // Z. Anorg. Allg. Chem. 2002. Vol. 628. № 5. P. 1158.
- Effendy, di Nicola C., Pettinari C., Pizzabiocca A., et al. // Inorg. Chim. Acta. 2006. Vol. 359. № 1. P. 64.
- Teo P., Koh L.L., Hor T.S.A. // Chem. Commun. 2007. Vol., № 41. P. 4221.
- Deng L.-R., Wang X.-J., Xiao W., et al. // Chem. Res. Chin. Univ. 2000. № 4. P. 375.
- Aslanidis P., Cox P.J., Divanidis S., Karagiannidis P. // Inorg. Chim. Acta. 2004. Vol. 357. № 9. P. 2677.
- Jin Q.-H., Yuan Y., Yang Y.-P., et al. // Polyhedron. 2015. Vol. 101. P. 56.
- Crespo O., Gimeno M.C., Laguna A., et al. // Dalton Trans. 2014. Vol. 43. № 32. P. 12214.
- Fenske D., Rothenberger A., Shafaei Fallah M. // Eur. J. Inorg. Chem. 2005. Vol. 2005. № 1. P. 59.
- Zhang L., Lü X.-Q., Zhang Q., et al. // Trans. Met. Chem. 2005. Vol. 30. № 1. P. 76.
- Dennehy M., Quinzani O.V., Mandolesi S.D., Burrow R.A. // J. Mol. Struct. 2011. Vol. 998. № 1. P. 119.
- Yang X., Isaac I., Persau C., et al. // Inorg. Chim. Acta. 2014. Vol. 421. P. 233.
- Mingsheng H., Peng Z., Ying Z., et al. // Acta Phys. Chim. Sin. 1991. Vol. 7. P. 694.
- Shawkataly O.B., Sani N.F.A., Rosli M.M., Razali M.R. // Z. Anorg. Allg. Chem. 2016. Vol. 642. № 5. P. 419.
- Gray T.G., Rudzinski C.M., Meyer E.E., et al. // J. Am. Chem. Soc. 2003. Vol. 125. № 16. P. 4755.
Қосымша файлдар
