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Interactions between vacancies and prismatic Σ3 grain boundary in α-Al2O3:First principles study

Interactions between vacancies and prismatic Σ3 grain boundary in α-Al_2O_3:First principles study
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摘要 Interactions between vacancies and Σ3 prismatic screw-rotation grain boundary in α-Al2O3 are investigated by the first principles projector-augmented wave method.It turns out that the vacancy formation energy decreases with reducing the distance between vacancy and grain boundary(GB) plane and reaches the minimum on the GB plane(at the atomic layer next to the GB) for an O(Al) vacancy.The O vacancy located on the GB plane can attract other vacancies nearby to form an O–O di-vacancy while the Al vacancy cannot.Moreover,the O–O di-vacancy can further attract other O vacancies to form a zigzag O vacancy chain on the GB plane,which may have an influence on the diffusion behavior of small atoms such as H and He along the GB plane of α-Al2O3. Interactions between vacancies and Σ3 prismatic screw-rotation grain boundary in α-Al2O3 are investigated by the first principles projector-augmented wave method.It turns out that the vacancy formation energy decreases with reducing the distance between vacancy and grain boundary(GB) plane and reaches the minimum on the GB plane(at the atomic layer next to the GB) for an O(Al) vacancy.The O vacancy located on the GB plane can attract other vacancies nearby to form an O–O di-vacancy while the Al vacancy cannot.Moreover,the O–O di-vacancy can further attract other O vacancies to form a zigzag O vacancy chain on the GB plane,which may have an influence on the diffusion behavior of small atoms such as H and He along the GB plane of α-Al2O3.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第6期371-375,共5页 中国物理B(英文版)
基金 Project supported by the National Key Basic Research and Technology Program,China(Grant No.2010CB731601) the National Natural Science Foundation of China(Grant No.50871057)
关键词 Α-AL2O3 grain boundary(GB) vacancy interaction α-Al2O3 grain boundary(GB) vacancy interaction
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  • 1Aiello A, Ciampichetti A and Benamati G 2004 J. Nucl. Mater. 329 1398.
  • 2Li L, Sang G, Zhang P C and Jiang G 2007 Acta Phys. Chim. Sin. 23 1912.
  • 3Zhang G K, Wang X L, Xiong Y F, Shi Y, Song J F and Luo D L 2013 Int. J. Hydrogen Energ. 38 1157.
  • 4Hollenberg G W, Simonen E P, Kalinin G and Terlain A 1995 Fusion Engineering and Design 28 190.
  • 5Forcey K S, Ross D K and Wu C H 1991 J. Nucl. Mater. 182 36.
  • 6Belonoshko A B, Rosengren A, Dong Q, Hultquist G and Leygraf 2004 Phy. Rev. B 69 024302.
  • 7Cannon R M, Rhodes W H and Heuer A H 1980 J. Am. Ceram. Soc. 63 46.
  • 8Heuer A H, Tighe N J and Cannon R M 1980 J. Am. Ceram. Soc. 63 53.
  • 9Lagerlof K P D, Mitchell T E and Heuer A H 1989 J. Am. Ceram. Soc. 72 2159.
  • 10Heuer A H and Lagerlof K P D 1999 Philos. Mag. Lett. 79 619.

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