Blocking of radiative thermal conduction in Zn2+-Incorporated high-entropy A2B2O7 fluorite oxides

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26
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28

초록

In this study, a high-entropy approach was employed to design a new single-phase A2B2O7 oxide for thermal insulation applications. Multicomponent high-entropy oxides, containing up to seven different cations, were successfully synthesized in a single defective fluorite structure. We observed that the incorporation of the functional cation, Zn2+, effectively blocked the heat radiation phenomenon by reducing the photon mean free path, and further reduced the high-temperature thermal conductivity owing to the larger free carrier concentration originated from the large number of oxygen vacancies. Although a large concentration of Zn2+ caused a slight reduction in thermal expansion, this study suggests that functional cations can be easily incorporated; thus, expanding the material diversity beyond the typical doping levels to develop new thermal barrier materials.

키워드

Thermal barrier coatingsThermal propertiesMechanical propertiesThermal radiationPHASE-TRANSFORMATIONSCOMPLEX PEROVSKITESBARRIER COATINGSGRAIN-SIZEMICROSTRUCTURETEMPERATURETRANSITIONZIRCONATEPERFORMANCESTABILITY
제목
Blocking of radiative thermal conduction in Zn2+-Incorporated high-entropy A2B2O7 fluorite oxides
저자
Song, DowonRyu, MyeungwooKwon, JiseokLyu, GuanlinKim, JunseongJeon, Hak-BeomSong, TaeseupPaik, UngyuYang, Byung-ilJung, Yeon-GilOh, Yoon-Suk
DOI
10.1016/j.ceramint.2021.08.263
발행일
2021-12
유형
Article in Press
저널명
Ceramics International
47
23
페이지
33544 ~ 33553