Composition | Preparation | Feature | Ref. |
---|---|---|---|
Pb(TiZrHfNbAl)-O Pb(TiZrHfNbCr)-O Pb (TiZrHfNbFe)-O Pb(TiZrHfNbMn)-O Pb(TiZrHfNbSc)-O (BiBaSrCaNa)Ti-O (BiBaSrCaK)Ti-O (BiBaSrNaPb)Ti-O | Solid-state reaction | show powdery HEOs and the perovskite phase formation is consistent with the Goldschmidt tolerance factor. | [115] |
(AlCoFeNiTi)3O4 | with anti-spinel structure | [116] | |
Ba(ZrTiSnHfX)O3 (X = Nb5+, Ta5+) | exhibits exceptional thermal stability within the range of 30 to 1400℃ | [117] | |
Ca5Sr5Ba5Pb5Nb2O6 | unfilled tetragonal tungsten bronze (TTB) structured | [118] | |
(REHoErYYb)3NbO7, (RE = Ce, Lu) (REHoErYYb)3NbO7: (REHoErYYb)NbO4 = 1:2 | the Ce-component samples showed superior corrosion resistance. | [119] | |
Ba0.4Sr0.6-xCaxNb2-xTaxO6 | exhibits TTB structure with significant dielectric properties | [120] | |
(YbLuTm)2Si2O7 (YbLuTmErHoDyGdSm)2Si2O7 (3-8HESi2O7) | High-throughput pressure-less sintering | excellent corrosion resistance at 1773 K | [121] |
(MnCoNiCuX)Fe2O4 (X=Fe, Mg) | Reactive flash sintering | a spinel crystal structure was obtained in just 30 min at 1173 K | [122] |
Sr(Ti2Zr2Hf3Mn0.15Sn0.18)O2.85 | Multimetallic polymeric precursors and photolithographic additive manufacturing | retain the printed geometry with high shape fidelity | [123] |
La(FeCuMnMgTi)O3 | Solid-state milling-heating method | displays robust stability in benzyl alcohol oxidation. | [124] |
(YbTmLuHoEr)2Ti2O7 | Floating-zone growth technique | monocrystalline pyrochlore structure | [125] |
(YGdDyErYb)2Hf2O7 | solution combustion | single phase fluorite structure with good TBC performance | [126] |
(Y5Yb5Er5Sc5)2Si2O7 | Sol-gel method | outstanding high temperature stability and CMAS corrosion resistance | [127] |
(YDyErTmYb)4Hf3O12 | ultrafast high-temperature sintering (UHS) | extremely sluggish grain growth characteristics and excellent high-temperature phase stability | [128] |
(YYbLuEuEr)3Al5O12 | Laser powder bed fusion | high-entropy phase with dendritic morphology | [129] |