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首页> 外文期刊>Journal of the European Ceramic Society >Rare earth and transition metal based entropy stabilised perovskite type oxides
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Rare earth and transition metal based entropy stabilised perovskite type oxides

机译:稀土和过渡金属基熵稳定钙钛矿型氧化物

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摘要

Multicomponent oxides with perovskite type of structure containing up to 10 different cations in equiatomic amounts have been synthesised for the first time. Out of eleven systems synthesised, only six systems crystallised as single phase perovskite type compounds with random and homogenous cation distribution on the respective sites. The formation of phase pure 10-cationic system, (Gd0.2La0.2Nd0.2Sm0.2Y0.2)(Co0.2Cr0.2Fe0.2Mn0.2Ni0.2)O-3, in contrast to the multiphase mixtures observed in five of the lower entropy systems (containing 6 cations) indicates a possible role of entropy in the stabilisation of a single phase crystal structure. The entropy driven structural stabilisation effect is further supported by the reversible phase transformation, from single phase to multiple phase upon cyclic heat treatment, observed in the (Gd0.2La0.2Nd0.2Sm0.2Y0.2)MnO3 system. This type of entropic signature has been observed in rocksalt based high entropy oxide systems. However, it has not been reported before for perovskite based compounds, as shown in this study.
机译:第一次合成含有高达10种不同阳离子的钙钛矿型结构的多组分氧化物已经合成。在合成的11个系统中,只有六个系统作为单相钙钛矿型化合物结晶,在各个位点上具有随机和均匀的阳离子分布。相纯10阳离子系统的形成,(GD0.2LA0.2ND0.2SM0.2Y.2M0.2Y.2MN0.2MN0.2MN0.2Y.2)O-3与五个中观察到的多相混合物相反下熵系统(包含6个阳离子)表示熵在单相晶体结构的稳定中的可能作用。通过在循环热处理后从单相到多相转移进一步支持熵驱动的结构稳定效果,在(GD0.2LA0.2MD0.2SM0.2M0.2Y.20.2.20.2)中观察到循环热处理。在基于RockSalt基的高熵氧化物系统中观察到这种类型的熵签名。然而,它之前尚未报道基于钙钛矿的化合物,如本研究所示。

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