Glass-like thermal conductivity in mass-disordered high-entropy (Y,Yb)2(Ti, Zr, Hf)2O7 for thermal barrier material

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초록

An entropy-stabilization strategy was applied to engineer a novel thermal insulating material by establishing a single-phase solid solution with the formula of (Y1/2Yb1/2)2(Ti1/3Zr1/3Hf1/3)2O7 (YYHEO). Structural analysis revealed that this material exceeded the typical substitutional solubility limit, even with a significant atomic size difference, where the conventional determination rule was defied. YYHEO exhibited a lower glass-like thermal conductivity due to its highly disordered crystal structure and the specific design strategy. The coefficient of thermal expansion and mechanical properties (e.g. elastic modulus and hardness) were comparable to conventional materials, suggesting that YYHEO is a promising candidate for application as a new thermal insulating material.

키워드

Entropy-stabilizationHigh-entropy oxideMechanical propertiesSolid solutionThermal propertiesPHASE-TRANSFORMATIONSCOMPLEX PEROVSKITESRADIATION TOLERANCEPYROCHLORETRANSITIONZIRCONATEMICROSTRUCTURESTABILITYTEMPERATURECERAMICS
제목
Glass-like thermal conductivity in mass-disordered high-entropy (Y,Yb)2(Ti, Zr, Hf)2O7 for thermal barrier material
저자
Song, DowonSong, TaeseupPaik, UngyuLyu, GuanlinJung, Yeon-GilJeon, Hak-BeomOh, Yoon-Suk
DOI
10.1016/j.matdes.2021.110059
발행일
2021-11
유형
Article
저널명
Materials and Design
210
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