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Chin. Phys. B, 2012, Vol. 21(5): 057102    DOI: 10.1088/1674-1056/21/5/057102
CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES Prev   Next  

First-principles study of mechanical stability and thermal properties of MNNi3 (M=Zn, Mg, Al) under pressure

Zhai Hong-Cun(翟红村)a), Li Xiao-Feng(李晓凤)b)c)†, Du Jun-Yi(杜军毅)a), and Ji Guang-Fu(姬广富)c)
a. Mathematics College, Luoyang Normal College, Luoyang 471022, China;
b. College of Physics and Electronic Information, Luoyang Normal College, Luoyang 471022, China;
c. Laboratory for Shock Wave and Detonation Physics Research Institute of Fluid Physics, Chinese Academy of Engineering Physics, Mianyang 621900, China
Abstract  The mechanical stability, elastic, and thermodynamic properties of the anti-perovskite superconductors MNNi3 (M=Zn, Mg, Al) are investigated by means of the first-principles calculations. The calculated structural parameters and elastic properties of MNNi3 are in good agreement with the experimental and the other theoretical results. From the elastic constants under high pressure, we predict that ZnNNi3, MgNNi3, and AlNNi3 are not stable at the pressures above 61.2 GPa, 113.3 GPa, and 122.4 GPa, respectively. By employing the Debye model, the thermodynamic properties, such as the heat capacity and the thermal expansion coefficient, under pressures and at finite temperatures are also obtained successfully.
Keywords:  density functional theory      elasticity      thermodynamic properties  
Received:  11 November 2011      Revised:  27 April 2012      Accepted manuscript online: 
PACS:  71.15.Mb (Density functional theory, local density approximation, gradient and other corrections)  
  62.20.D- (Elasticity)  
  91.60.Gf (High-pressure behavior)  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 11147101 and 11071107), the Henan Research Program of Basic and Frontier Technology, China (Grant Nos. 112300410024 and 102102210452), the Henan Natural Science Basic Research, China (Grant Nos. 2011B140013 and 2010A140011), the Scientific Research Foundation of Luoyang Normal University, China (Grant No. 2010-QNJJ-003).

Cite this article: 

Zhai Hong-Cun(翟红村), Li Xiao-Feng(李晓凤), Du Jun-Yi(杜军毅), and Ji Guang-Fu(姬广富) First-principles study of mechanical stability and thermal properties of MNNi3 (M=Zn, Mg, Al) under pressure 2012 Chin. Phys. B 21 057102

[1] He T, Huang Q, Ramirez A P, Wang Y, Regan K A, Rogado N, Hayward M A, Haas M K, Slusky J S, Inumara K, Zandbergen H W, Ong N P and Cava R J 2001 Nature 411 54
[2] Uehara M, Yamazaki T, Krôi T, Kashida T, Kimishima Y and Ohishi K 2007 J. Phys. Chem. Solids 68 2178
[3] Dong A F, Che G C, Huang W W, Jia S L, Chen H and Zhao Z X 2005 Physica C 422 65
[4] Tong P, Sun Y P, Zhu X B and Song W H 2006 Phys. Rev. B 73 245106
[5] Uehara M, Yamazaki T, Kori T, Kashida T, Kimishima Y and Hase I 2007 J. Phys. Soc. Japan 76 034714
[6] Tong P, Sun Y P, Zhu X B and Song W H 2007 Solid State Commun. 141 336
[7] Uehara M, Uehara A, Kozawa K and Kimishima Y 2009 J. Phys. Soc. Japan 78 033702
[8] Uehara M, Uehara A, Kozawa K, Yamazaki T and Kimishima Y 2010 Physica C 470 S688
[9] Karki A B, Xiong Y M, Young D P and Adams P W 2009 Phys. Rev. B 79 212508
[10] Shim J H, Kwon S K and Min B I 2001 Phys. Rev. B 64 180510
[11] Tutuncu H and Srivastava G P 2006 J. Phys.:Condens. Matter 18 11089
[12] Li C, Chen W G, Wang F, Li S F, Sun Q, Wang S Y and Jia Y 2009 J. Appl. Phys. 105 123921
[13] Bannikov V V, Shein I R and Ivanovskii A L 2010 Physica B 405 4615
[14] Okoye C M I 2010 Physica B 405 1562
[15] Shein I R, Bannikov V V and Ivanovskii A L 2010 Phys. Status Solidi B 247 72
[16] Bannikov V V, Shein I R and Ivanovskii A L 2010 Comput. Mater. Sci. 49 457
[17] Garbarino G, Monteverde M, Nunez-Regueiro M, Acha C, Weht R, He T, Regan K A, Rogado N, Hayward M and Cava R J 2004 Physica C 408 754
[18] Zhang W, Chen X R, Cai L C and Jing F Q 2008 J. Phys.:Condens. Matter 20 325228
[19] Vanderbilt D 1990 Phys. Rev. B 41 7892
[20] Perdew J P and Wang Y 1992 Phys. Rev. B 45 13244
[21] Payne M C, Teter M P, Allen D C, Arias T A and Joannopoulos J D 1992 Rev. Mod. Phys. 64 1045
[22] Milman V, Winkler B, White J A, Packard C J, Payne M C, Akhmatskaya E V and Nobes R H 2000 Int. J. Quantum Chem. 77 895
[23] Wang J, Yip S, Phillpot S R and Wolf D 1995 Phys. Rev. B 52 12627
[24] Wallace D C 1972 Thermodynamics of Crystals (New York:Wiley)
[25] Karki B B, Ackland G J and Crain J 1997 J. Phys.:Condens. Matter 9 8579
[26] Barron T H K and Klein M L 1965 Proc. Phys. Soc. 85 523
[27] Anderson O L 1963 J. Phys. Chem. Solids 24 909
[28] Schreiber E, Anderson O L and Soga N 1973 Elastic Constants and their Measurements (New York:McGraw-Hill)
[29] Francisco E, Recio J M, Blanco M A, Martín-Pend醩 A and Costales A 1998 J. Phys. Chem. 102 1595
[30] Li X F, Zhai H C, Fu H Z, Liu Z L and Ji G F 2011 Chin. Phys. B 19 093101
[31] Li X F, Peng W M, Shen X M, Ji G F and Zhao F 2009 Acta Phys. Sin. 58 5598 (in Chinese)
[32] Zhang W, Cheng Y, Zhu J and Chen X R 2009 Chin. Phys. B 18 1207
[33] Li X F, Liu Z L, Peng W M and Zhao A K 2011 Acta Phys. Sin. 60 076501 (in Chinese)
[34] Murnaghan F D 1944 Proc. Natl. Acad. Sci. USA 30 244
[35] Sin'ko G V and Smirnov N A 2002 J. Phys.:Condens. Matter 14 6989
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