Prediction of Isomorphous Substitutions and Stability of Solid Solutions with β-YF3 Structure in Lu1–xLnxF3, Ln = Sm–Yb Systems

Author:

Get’man E. I.,Oleksii Yu. A.,Ardanova L. I.,Radio S. V.

Publisher

Springer International Publishing

Reference29 articles.

1. Mayakova MN (2019) Fazoobrazovaniye pri sinteze neorganicheskikh nanoftoridov shchelochnozemel’nykh i redkozemel’nykh elementov iz vodnykh rastvorov [Phase formation in the synthesis of inorganic nanofluorides of alkaline earth and rare earth elements from aqueous solutions. Dissertation for the degree of candidate of chemical sciences]. PGPI RAS, Moscow, 141p. Available at https://diss.muctr.ru/media/dissertations/2019/05/%D0%9C%D0%B0%D1%8F%D0%BA%D0%BE%D0%B2%D0%B0_%D0%9C.%D0%9D.pdf. Accessed 1 Dec 2021 (in Russian)

2. Sorokin NI, Krivandina EA, Zhmurova ZI, Lyamina OI, Sobolev BP (2000) Growth of single crystals and optimization of anionic transport in La1–xNdxF3 solid solutions with tysonite-type structure by isovalent substitutions. Crystallogr Rep 45:695–697

3. Glynn TJ, Laulicht I, Lou L, Silversmith AJ, Yen WM (1984) Trapping of optical excitation by two types of acceptors in La0.72Pr0.25Nd0.03F3. Phys Rev B 29:4852–4858

4. Collings BC, Silversmith AJ (1994) Avalanche upconversion in LaF3:Tm3+. J Lumin 62:271–279

5. Chen F, Wang Z-Y, Zhang Y-Y, Yu K-H, Weng L-X, Wei W (2017) Synthesis of poly(acrylic acid)-functionalized La1–xEuxF3 nanocrystals with high photoluminescence for cellular imaging. Acta Phys-Chim Sin 33:1446–14526

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