2020
DOI: 10.1016/j.ceramint.2020.07.149
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Synthesis and thermophysical performances of (Nd1-xYbx)2AlTaO7 oxides for heat-insulation coating applications

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Cited by 8 publications
(1 citation statement)
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“…Ye et al [115] indicated that ScTaO 4 could resist the corrosion of CMAS effectively, due to low solubility of Sc 3+ in the CMAS. [117] 1.5 (1173 K) 10 (1473 K) Y 1−x Mg x TaO 4−x/2 (x = 0, 0.08, 0.12, 0.16 and 0.20) [118] 1.45-1.57(1173 K) 9.0-9.5 (1473 K) Yb(Ta x Nb 1−x )O 4 [113] 1.49 (Minimum at 1473 K) 10.6 (Maximum at 1473 K) Ln 3 Ce 7 Ta 2 O 23.5 (Ln = Sm, Gd) [119] 0.67-1.07 >12 EuNbO 4 [120] 1.52(973 K) 11.2 (1473 K) (Nd 1−x Yb x ) 2 AlTaO 7 [121] 0.8 (Minimum mean) 8.82-9.93 (1473 K)…”
Section: Rare-earth Tantalatementioning
confidence: 99%
“…Ye et al [115] indicated that ScTaO 4 could resist the corrosion of CMAS effectively, due to low solubility of Sc 3+ in the CMAS. [117] 1.5 (1173 K) 10 (1473 K) Y 1−x Mg x TaO 4−x/2 (x = 0, 0.08, 0.12, 0.16 and 0.20) [118] 1.45-1.57(1173 K) 9.0-9.5 (1473 K) Yb(Ta x Nb 1−x )O 4 [113] 1.49 (Minimum at 1473 K) 10.6 (Maximum at 1473 K) Ln 3 Ce 7 Ta 2 O 23.5 (Ln = Sm, Gd) [119] 0.67-1.07 >12 EuNbO 4 [120] 1.52(973 K) 11.2 (1473 K) (Nd 1−x Yb x ) 2 AlTaO 7 [121] 0.8 (Minimum mean) 8.82-9.93 (1473 K)…”
Section: Rare-earth Tantalatementioning
confidence: 99%