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Recent Advances in High-entropy Ceramics: Design Principles, Structural Characteristics, and Emerging Properties
Yiran Li, Donghui Pan, Jiehui Cao, Wenhui Fang, Yiwang Bao, Bin Liu
Extreme Materials, DOI: 10.1016/j.exm.2025.05.002

Composition Preparation Feature Ref.
(MgCoNiCuZn)O Pulsed Laser Deposition (PLD) structural stability of rock-salt modulated by Mg, Ni, Co [94]
Li(CrMnFeCoNiCu)O2 single-phase layered rock-salt oxide films [95]
(CeZrLaSmNdY)O2-δ Solid-state reaction single-phase cubic fluorite structure [96]
(YZHfCeX)O2-δ (X = La, Nd, Gd, and Dy) uniformly distributed fluorite structure with good force thermal stability [97]
(ZrHfTiSn)O2 Solid phase sintering highly resistant to irradiation [98]
RE2A2O7 (RE = [La, Sm, Nd, Gd. Dy, Yb, Y, Er, Eu, Tb, Ho, Lu, Tm],
A = Zr,Hf,Ti,Sn,Ce or Pr)
RE2Ce2O7 and RE2Pr2O7 exhibit a single fluorite structure [99]
(ZrHfPrYLa)O2-δ uniform fluorite structure [100]
(CuCoNiZnMg)O Coordination Polymerization
Solid Dispersant-Assisted Annealing
single-crystalline HEO rods with uniform dispersion [101]
(BiZrMoWCeLa)O2 Surfactantassisted hydrothermal technique high electrochemical efficiency [102]
(YLaNdSmYbLuEuGdCe)2O3 Co-precipitation method combined with conventional sintering bixbyite structure with high oxygen barrier properties [103]
(5Re)2O3 (RE = Ce, Nd, Sm, Eu, Gd, Dy, Ho, Er, Tm, and Yb) Solution combustion synthesis method combined with conventional sintering with cubic bixbyite-structured, and better oxygen barrier properties. [104]
(EuErLuYYb)2O3,
(SmErLuYYb)2O3,
(SmEuErYYb)2O3,
(SmEuLuYYb)2O3
Spark Plasma Sintering (SPS) better CMAS resistance [105]
(Y-La-Ce-Nd-Gd)2O3+β Mechanochemical ball milling and sol-gel the highest properties in the sol-gel process, followed by that in wet milling and dry milling [106]
Table 2. Synthesis methods for high-entropy simple oxides corresponding product features.
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