Thermal Expansion of Ba3Lu(BO3)3 Borate

封面

如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

In this study, Ba3Lu(BO3)3 borate obtained by solid-phase synthesis is explored by high-temperature X-ray powder diffraction in the temperature range from 25 to 900°C. At room temperature, the compound expands slightly anisotropically (αmax/αmin = 1.2), and with an increase in temperature, the degree of anisotropy increases significantly (αmax/αmin = 6.9 at 900°C). The maximum expansion is observed along the crystallographic axis c (αc = 10.45 × 10–6°C–1 at 25°C and 36.34 × 10–6°C–1 at 900°C), perpendicular to which the boron-oxygen triangles [BO3] are located, and the minimum is in the plane where the triangles are located

作者简介

Ya. Biryukov

Grebenshchikov Institute of Silicate Chemistry, Russian Academy of Sciences, 199034, St. Petersburg, Russia

Email: y.p.biryukov@gmail.com
Россия, 199034, наб. Макарова, 2, Санкт-Петербург

R Bubnova

Grebenshchikov Institute of Silicate Chemistry, Russian Academy of Sciences, 199034, St. Petersburg, Russia

编辑信件的主要联系方式.
Email: rimma_bubnova@mail.ru
Россия, 199034, Санкт-Петербург, наб. Макарова, 2

参考

  1. Илюхин А.Б., Джуринский Б.Ф. Кристаллические структуры двойных оксоборатов Ln Ca4O(BO3)3 (Ln = Gd, Tb, Lu) и Eu2CaO(BO3)2 // Журн. неорганической химии. 1993. Т. 38. № 6. С. 917–921.
  2. Duan C., Li W., Yuan J., Zhao J. Synthesis, crystal structure and X-ray excited luminescent properties of LuBa3B9O18 // J. Alloys and Compounds. 2008. V. 458. P. 536–541.
  3. Hermus M., Phan P.C., Duke A.C., Brgoch J. Tunable optical properties and increased thermal quenching in the blue-emitting phosphor series: Ba2(Y1 – xLux)5B5O17:Ce3+ (x = 0–1) // Chemistry of Materials. 2017. V. 29. P. 5267–5275.
  4. Biryukov Y.P., Bubnova R.S., Krzhizhanovskaya M.G., Filatov S.K. Structure refinement and thermal properties of novel cubic borate Lu2Ba3B6O15 // Materials Chemistry and Physics. 2019. V. 229. P. 355–361.
  5. Filatov S.K., Biryukov Y.P., Bubnova R.S., Shablinskii A.P. The novel borate Lu5Ba6B9O27 with a new structure type: synthesis, disordered crystal structure and negative linear thermal expansion // Acta Crystallographica. 2019. B75. P. 697–703.
  6. Höppe H.A. Recent developments in the field of inorganic phosphors // Angewandte Chemie. Int. Ed. 2009. V. 48. P. 3572–3582.
  7. Pimputkar S., Speck J.S., DenBaars S.P., Nakamura S. Prospects for LED lighting // Nature Photonics. 2009. V. 3. P. 180–182.
  8. Mikami M., Kijima N., Bertrand B., Stankovski M., Gonze X. Theoretical Approach for White-LED Phosphors: from Crystal Structures to Optical Properties // IOP Conference Series: Materials Science and Engineering. 2011. V. 18. P. 102001.
  9. Duke A.C., Hariyani S., Brgoch J. Ba3Y2B6O15:Ce3+ – a high symmetry, narrowemitting blue phosphor for wide-gamut white lighting // Chemistry of Materials. 2018. V. 30. № 8. P. 2668–2675.
  10. Kolesnikov I.E., Bubnova R.S., Povolotskiy A.V., Biryukov Y.P., Povolotckaia A.V., Shorets O.Yu., Filatov S.K. Europium-activated phosphor Ba3Lu2B6O15: influence of isomorphic substitution on photoluminescence properties // Ceramics International. 2021. V. 47. № 6. P. 8030–8034.
  11. Bubnova R.S., Povolotskiy A.V., Biryukov Y.P., Kolesnikov I.E., Volkov S.N., Filatov S.K. Cation sites occupation and luminescence of novel red-emitting phosphors Ba6(Lu1 – xEux)5B9O27 (x = 0.02–0.2) // Ceramics International. 2022. V. 48. № 11. P. 15 966–15 974.
  12. Biryukov Y.P., Bubnova R.S., Filatov S.K., Ugolkov V.L. Thermal expansion anisotropy of LuBa3B9O18 borate composed of isolated rigid B3O6 groups // Materials Chemistry and Physics. 2018. V. 219. P. 233–241.
  13. Biryukov Y.P., Bubnova R.S., Filatov S.K. Synthesis, crystal structures and thermal expansion of novel lutetium-barium borates // Acta Crystallographica. 2019. A75. e267.
  14. Cox James R., Keszler Douglas A., Huang J. The Layered Borates Ba3M(BO3)3 (M = Dy, Ho, Y, Er, Tm, Yb, Lu, and Sc) // Chemistry of Materials. 1994. V. 6. № 11. P. 2008–2013.
  15. Sasaki A., Himeda A., Konaka H., Muroyama N. Ab initio crystal structure analysis based on powder diffraction data used PDXL // Rigaku J. 2010. V. 26. P. 10–14.
  16. Bubnova R.S., Firsova V.A., Volkov S.N., Filatov S.K. RietveldToTensor: Program for Processing Powder X-Ray Diffraction Data under Variable Conditions // Glass Physics and Chemistry. 2018. V. 44. P. 33–40.
  17. Momma K., Izumi F. VESTA 3 for three-dimensional visualization of crystal, volumetric and morphology data // J. Applied Crystallography. 2011. V. 44. P. 1272–1276.
  18. Bubnova R.S., Filatov S.K. High-Temperature borate crystal chemistry // Zeitschrift für Kristallographie – Crystalline Materials. 2013. V. 228. P. 395–428.
  19. Smirnova E.S., Alekseeva O.A., Dudka A.P., Khmelenin D.N., Frolov K.V., Lyubutina M.V., Gudim I.A., Lyubutin I.S. Crystal structure and structural phase transition in (Ho0.96Bi0.04)Fe3(BO3)4 in the temperature range 11–500 K // Acta Crystallographica. 2019. V. B75. P. 954–968.

补充文件

附件文件
动作
1. JATS XML
2.

下载 (114KB)
3.

下载 (352KB)
4.

下载 (93KB)
5.

下载 (567KB)
6.

下载 (409KB)

版权所有 © Я.П. Бирюков, Р.С. Бубнова, 2023