论文标题

CR2ALC中的Yttrium掺入:在(CR,Y)2ALC最大相薄膜的亚稳相形成和分解上

Yttrium incorporation in Cr2AlC: On the metastable phase formation and decomposition of (Cr,Y)2AlC MAX phase thin films

论文作者

Azina, Clio, Bartsch, Tim, Holzapfel, Damian M., Dahlqvist, Martin, Rosen, Johanna, Löfler, Lukas, Mendez, Alba San Jose, Hans, Marcus, Primetzhofer, Daniel, Schneider, Jochen M.

论文摘要

本文中,我们通过在室温下从复合cr-al-c和元素y靶标共同分解亚稳态(CR,Y)2ALC最大相固体溶液的合成,然后退火。虽然直接的高温合成导致多相膜,如X射线衍射分析,室温下沉积所证明的那样,随后退火至760°C,导致形成了相纯(CR,Y)2ALC,通过扩散形成。较高的退火温度导致亚稳态相分解为CR2ALC,Y5AL3和CR碳化物。与纯CR2ALC相反,含Y的相位直接在最大相结构中结晶,而不是首先形成无序的实心溶液。此外,与CR2ALC相比,结晶温度显示为Y含量依赖性,并且在。%y时增加了5°C。预测(CR,Y)2ALC及其分解的亚稳态相的计算与实验发现非常吻合。

Herein we report on the synthesis of a metastable (Cr,Y)2AlC MAX phase solid solution by co-sputtering from a composite Cr-Al-C and elemental Y target, at room temperature, followed by annealing. While direct high-temperature synthesis resulted in multiphase films, as evidenced by X-ray diffraction analyses, room temperature depositions, followed by annealing to 760 °C led to the formation of phase pure (Cr,Y)2AlC by diffusion. Higher annealing temperatures caused decomposition of the metastable phase into Cr2AlC, Y5Al3 , and Cr-carbides. In contrast to pure Cr2AlC, the Y-containing phase crystallizes directly in the MAX phase structure instead of first forming a disordered solid solution. Furthermore, the crystallization temperature was shown to be Y-content dependent and was increased by ~200 °C for 5 at.% Y compared to Cr2AlC. Calculations predicting the metastable phase formation of (Cr,Y)2AlC and its decomposition are in excellent agreement with the experimental findings.

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