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Prediction of a superhard material of ReN4 with a high shear modulus

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【作者】 赵文杰许红斌王渊旭

【Author】 Zhao Wen-Jie, Xu Hong-Bin, and Wang Yuan-Xu Institute for Computational Materials Science, School of Physics and Electronics, Henan University, Kaifeng 475004, China

【机构】 Institute for Computational Materials Science,School of Physics and Electronics,Henan University

【摘要】 Using first-principles calculations, this paper systematically investigates the structural, elastic, and electronic properties of ReN 4 . The calculated positive eigenvalues of the elastic constant matrix show that the orthorhombic P bca structure of ReN 4 is elastically stable. The calculated band structure indicates that ReN 4 is metallic. Compared with the synthesized superhard material WB 4 , it finds that ReN 4 exhibits larger bulk and shear moduli as well as a smaller Poisson’s ratio. In addition, the elastic constant c 44 of ReN 4 is larger than all the known 5d transition metal nitrides and borides. This combination of properties makes it an ideal candidate for a superhard material.

【Abstract】 Using first-principles calculations, this paper systematically investigates the structural, elastic, and electronic properties of ReN 4 . The calculated positive eigenvalues of the elastic constant matrix show that the orthorhombic P bca structure of ReN 4 is elastically stable. The calculated band structure indicates that ReN 4 is metallic. Compared with the synthesized superhard material WB 4 , it finds that ReN 4 exhibits larger bulk and shear moduli as well as a smaller Poisson’s ratio. In addition, the elastic constant c 44 of ReN 4 is larger than all the known 5d transition metal nitrides and borides. This combination of properties makes it an ideal candidate for a superhard material.

【基金】 Project supported by the Program for Science and Technology Innovation Talents in Universities of Henan Province, China(Grant No. 2009HASTIT003);the Foundation of Science and Technology Department of Henan Province, China (Grant No.082300410010);Scientific Research Foundation for the Returned Overseas Chinese Scholars, Ministry of Education of China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2010年01期
  • 【分类号】TB303
  • 【被引频次】1
  • 【下载频次】29
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