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Synthesis of Intermetallic (Mg1−xAlx)2Ca by Combinatorial Sputtering

机译:组合溅射法合成金属间化合物(Mg1-xAlx)2Ca

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摘要

The synthesis–composition–structure relationship in the Mg–Ca–Al system is studied using combinatorial magnetron sputtering. With increasing deposition temperature, a drastic decrease in Mg concentration is obtained. This behavior can be understood based on density functional theory calculations yielding a desorption energy of 1.9 eV/atom for Mg from a hexagonal Mg nanocluster which is far below the desorption energy of Mg from a Mg2Ca nanocluster (3.4 eV/atom) implying desorption of excess Mg during thin film growth at elevated temperatures. Correlative structural and chemical analysis of binary Mg–Ca thin films suggests the formation of hexagonal Mg2Ca (C14 Laves phase) in a wide Mg/Ca range from 1.7 to 2.2, expanding the to date reported stoichiometry range. Pronounced thermally-induced desorption of Mg is utilized to synthesize stoichiometric (Mg1−x,Alx)2Ca thin films by additional co-sputtering of elemental Al, exhibiting a higher desorption energy (6.7 eV/atom) compared to Mg (3.4 eV/atom) from Mg2Ca, which governs its preferred incorporation during synthesis. X-ray diffraction investigations along the chemical gradient suggest the formation of intermetallic C14 (Mg1–x,Alx)2Ca with a critical aluminum concentration of up to 23 at.%. The introduced synthesis strategy, based on the thermally-induced desorption of weakly bonded species, and the preferential incorporation of strongly bonded species, may also be useful for solubility studies of other phases within this ternary system as well as for other intermetallics with weakly bonded alloying constituents.
机译:使用组合磁控溅射研究了Mg-Ca-Al系统中的合成-成分-结构关系。随着沉积温度的升高,Mg浓度急剧下降。可以基于密度泛函理论计算来理解此行为,因为六方Mg纳米簇对Mg的解吸能为1.9 eV /原子,远低于Mg2Ca纳米簇对Mg的解吸能(3.4 eV /原子),这意味着过量的解吸。在高温下薄膜生长期间的镁。对二元Mg-Ca薄膜的相关结构和化学分析表明,在1.7-2.2的宽Mg / Ca范围内形成了六方Mg2Ca(C14 Laves相),扩大了迄今为止报道的化学计量范围。明显的热诱导的Mg解吸用于通过元素Al的额外共溅射合成化学计量的(Mg1-x,Alx)2Ca薄膜,与Mg(3.4 eV / atom)相比,具有更高的解吸能(6.7 eV / atom)。 )(Mg2Ca),它控制了合成过程中的优先掺入。沿化学梯度进行的X射线衍射研究表明,形成的金属间C14(Mg1-x,Alx)2Ca的临界铝浓度高达23 at。%。引入的基于弱键合物种的热诱导解吸和优先结合强键合物种的合成策略,也可用于该三元体系中其他相以及具有弱键合合金的其他金属间化合物的溶解性研究成分。

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