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Determination of crystal structure and physical properties of Ru2Al5 intermetallic from first-principles calculations

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arxiv 2408.17159 v1 pith:ZOYGC4SE submitted 2024-08-30 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords ru2al5crystalintermetallicstructurecalculationsfivestructuresalloys
verification ladder T0 review T1 audit T2 compute T3 formal
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Novel ordered intermetallic compounds have stimulated much interest. Ru-Al alloys are a prominent class of high-temperature structural materials, but the experimentally reported crystal structure of the intermetallic Ru2Al5 phase remains elusive and debatable. To resolve this controversy, we extensively explored the crystal structures of Ru2Al5 using first-principles calculations combined with crystal structure prediction technique. Among the calculated X-ray diffraction patterns and lattice parameters of five candidate Ru2Al5 structures, those of the orthorhombic Pmmn structure best aligned with recent experimental results. The structural stabilities of the five Ru2Al5 structures were confirmed through formation energy, elastic constants, and phonon spectrum calculations. We also comprehensively analyzed the mechanical and electronic properties of the five candidates. This work can guide the exploration of novel ordered intermetallic compounds in Ru-Al alloys.

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