Инд. авторы: Rashchenko S.V., Shatskiy A.F., Arefiev A.V., Seryotkin Y.V., Litasov K.D.
Заглавие: Na4Ca(CO3)(3): a novel carbonate analog of borate optical materials
Библ. ссылка: Rashchenko S.V., Shatskiy A.F., Arefiev A.V., Seryotkin Y.V., Litasov K.D. Na4Ca(CO3)(3): a novel carbonate analog of borate optical materials // Crystengcomm. - 2018. - Vol.20. - Iss. 35. - P.5228-5232. - ISSN 1466-8033.
Внешние системы: DOI: 10.1039/c8ce00745d; РИНЦ: 35744842; SCOPUS: 2-s2.0-85053417263; WoS: 000444554400017;
Реферат: eng: Carbonate optical materials currently attract a lot of interest as an unexplored alternative to borate ones. However, these two classes of compounds were believed to have quite different crystal chemistry, so that no systematic attempts were made to reproduce crystal structures of known borate optical materials in carbonates. Here we describe a novel Na4Ca(CO3)(3) cubic carbonate (Ia3d, a = 15.5770(5) angstrom), isostructural to borates of the NaBa4(BO3)(3) family known for their phosphor properties, and discuss further perspectives in the investigation of borate-structured' carbonate materials.
Ключевые слова: EMISSION; SYSTEM; ULTRAVIOLET; CRYSTAL; 6 GPA; DEGREES-C; FLUORIDE CARBONATE; LIGHT-EMITTING-DIODES; PHOSPHOR; SR;
Издано: 2018
Физ. характеристика: с.5228-5232
Цитирование: 1. C. Chen, T.Sasaki, R.Li, Y.Wu, Z.Lin, Y.Mori, Z.Hu, J.Wang, G.Aka, M.Yoshimura and Y.Kaneda, Nonlinear Optical Borate Crystals: Principals and Applications, John Wiley & Sons, 2012 2. G. Zou N. Ye L. Huang X. Lin J. Am. Chem. Soc. 2011 133 20001-20007 3. M. Luo N. Ye G. Zou C. Lin W. Cheng Chem. Mater. 2013 25 3147-3153 4. M. Luo C. Lin G. Zou N. Ye W. Cheng CrystEngComm 2014 16 4414-4421 5. M. Luo G. Wang C. Lin N. Ye Y. Zhou W. Cheng Inorg. Chem. 2014 53 8098-8104 6. Q. Chen M. Luo Crystals 2016 7 10 7. Y. Song M. Luo D. Zhao G. Peng C. Lin N. Ye J. Mater. Chem. C 2017 5 8758-8764 8. T. T. Tran J. Young J. M. Rondinelli P. S. Halasyamani J. Am. Chem. Soc. 2017 139 1285-1295 9. B. I. Kidyarov Crystals 2017 7 109 10. V. M. Goldschmidt and H.Hauptmann, Nachrichten Von Ges. Wiss. Zu Gött. Math.-Phys. Kl., 1932, vol. 1932, pp. 53-72 11. E. M. Levin R. S. Roth J. B. Martin Am. Mineral. 1961 46 1030-1055 12. N. I. Leonyuk J. Cryst. Growth 2017 476 69-77 13. J. Gao L. Song X. Hu D. Zhang Solid State Sci. 2011 13 115-119 14. M. Luo Y. Song C. Lin N. Ye W. Cheng X. Long Chem. Mater. 2016 28 2301-2307 15. A. Shatskiy I. S. Sharygin K. D. Litasov Y. M. Borzdov Y. N. Palyanov E. Ohtani Am. Mineral. 2013 98 2164-2171 16. I. V. Podborodnikov A. Shatskiy A. V. Arefiev S. V. Rashchenko A. D. Chanyshev K. D. Litasov Phys. Chem. Miner. 10.1007/s00269-018-0961-2 17. P. N. Gavryushkin V. V. Bakakin N. B. Bolotina A. F. Shatskiy Y. V. Seryotkin K. D. Litasov Cryst. Growth Des. 2014 14 4610-4616 18. S. V. Rashchenko V. V. Bakakin A. F. Shatskiy P. N. Gavryushkin Y. V. Seryotkin K. D. Litasov Cryst. Growth Des. 2017 17 6079-6084 19. A. E. Kokh N. G. Kononova T. B. Bekker N. G. Furmanova B. A. Maximov N. B. Bolotina S. N. Sul'yanov P. P. Fedorov E. A. Tkachenko S. V. Kuznetsov A. A. Sobol Y. F. Kargin Russ. J. Inorg. Chem. 2004 49 984-988 20. C. Guo X. Ding H. Jin Seo Z. Ren J. Bai Opt. Laser Technol. 2011 43 1351-1354 21. C. Guo X. Ding H. J. Seo Z. Ren J. Bai J. Alloys Compd. 2011 509 4871-4874 22. Q. Wang D. Deng Y. Hua L. Huang H. Wang S. Zhao G. Jia C. Li S. Xu J. Lumin. 2012 132 434-438 23. H. Yu D. Deng S. Xu C. Yu H. Yin Q. Nie J. Lumin. 2012 132 2553-2556 24. I. Pekgözlü J. Lumin. 2013 143 93-95 25. I. Pekgözlü J. Lumin. 2016 169 182-185 26. Z.-W. Zhang X.-Y. Sun D.-D. Jia S.-T. Song J.-P. Zhang S.-F. Wang Ceram. Int. 2013 39 3965-3970 27. J. Huang J. Dai D. Deng H. Yu Y. Li Y. Hua S. Zhao C. Li S. Xu RSC Adv. 2015 5 85682-85690 28. W. Luo D. Tu R. Li X. Mao Y. Xu J. Ren B. Li H. Wu J. Mater. Sci. 2017 52 9764-9772 29. A. Shatskiy I. S. Sharygin P. N. Gavryushkin K. D. Litasov Y. M. Borzdov A. V. Shcherbakova Y. Higo K.-I. Funakoshi Y. N. Palyanov E. Ohtani Am. Mineral. 2013 98 1593-1603 30. A. Rothkirch G. D. Gatta M. Meyer S. Merkel M. Merlini H.-P. Liermann J. Synchrotron Radiat. 2013 20 711-720 31. V. Petříček M. Dušek L. Palatinus Z. Kristallogr.-Cryst. Mater. 2014 229 345-352 32. L. Palatinus G. Chapuis J. Appl. Crystallogr. 2007 40 786-790 33. C. Capillas E. S. Tasci G. de la Flor D. Orobengoa J. M. Perez-Mato M. I. Aroyo Z. Kristallogr.-Cryst. Mater. 2011 226 186-196 34. K. Momma F. Izumi J. Appl. Crystallogr. 2011 44 1272-1276 35. Y. G. Lavrent'ev N. S. Karmanov L. V. Usova Russ. Geol. Geophys. 2015 56 1154-1161 36. M. Wojdyr J. Appl. Crystallogr. 2010 43 1126-1128 37. A. Vegas Acta Crystallogr., Sect. C: Cryst. Struct. Commun. 1985 41 1689-1690 38. V. A. Blatov, Inorganic 3D Structures, Springer, Berlin, Heidelberg, 2011, pp. 31-66 39. S. V. Rashchenko T. B. Bekker V. V. Bakakin Y. V. Seryotkin V. S. Shevchenko A. E. Kokh S. Y. Stonoga Cryst. Growth Des. 2012 12 2955-2960 40. L. Wu X. L. Chen H. Li M. He Y. P. Xu X. Z. Li Inorg. Chem. 2005 44 6409-6414 41. N. E. Brese M. O'Keeffe Acta Crystallogr., Sect. B: Struct. Sci. 1991 47 192-197