Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (6): 1034-1042.DOI: 10.1007/s40195-021-01291-5
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Xinzeng Liang1, Jing Bai1,2,4(), Jianglong Gu3, Ziqi Guan1, Haile Yan1, Yudong Zhang5, Claude Esling5, Xiang Zhao1(
), Liang Zuo1
Received:
2021-04-24
Revised:
2021-06-01
Accepted:
2021-06-20
Online:
2022-06-10
Published:
2022-06-15
Contact:
Jing Bai,Xiang Zhao
About author:
Xiang Zhao, zhaox@mail.neu.edu.cnXinzeng Liang, Jing Bai, Jianglong Gu, Ziqi Guan, Haile Yan, Yudong Zhang, Claude Esling, Xiang Zhao, Liang Zuo. Composition-Dependent of 6 M Martensite Structure and Magnetism in Cu-Alloyed Ni-Mn-In-Co by First-Principles Calculations[J]. Acta Metallurgica Sinica (English Letters), 2022, 35(6): 1034-1042.
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Cu atom at different sites | Notation type | |
---|---|---|
This work | Standard notation (at.%) | |
CuNi | Ni20Mn18In6Co3Cu | ((Ni41.67Co6.25)Cu2.08)Mn37.5In12.5 |
CuMn1 | Ni21Mn17In6Co3Cu | (Ni43.75Co6.25)(Mn35.42Cu2.08)In12.5 |
CuMn2 | Ni21Mn17In6Co3Cu | (Ni43.75Co6.25)(Mn35.42Cu2.08)In12.5 |
CuIn | Ni21Mn18In5Co3Cu | (Ni43.75Co6.25)Mn37.5(In10.42Cu2.08) |
CuCo | Ni21Mn18In6Co2Cu | (Ni43.75(Co4.17Cu2.08))Mn37.5In12.5 |
Table 1 Relationship between this work and the standard notation
Cu atom at different sites | Notation type | |
---|---|---|
This work | Standard notation (at.%) | |
CuNi | Ni20Mn18In6Co3Cu | ((Ni41.67Co6.25)Cu2.08)Mn37.5In12.5 |
CuMn1 | Ni21Mn17In6Co3Cu | (Ni43.75Co6.25)(Mn35.42Cu2.08)In12.5 |
CuMn2 | Ni21Mn17In6Co3Cu | (Ni43.75Co6.25)(Mn35.42Cu2.08)In12.5 |
CuIn | Ni21Mn18In5Co3Cu | (Ni43.75Co6.25)Mn37.5(In10.42Cu2.08) |
CuCo | Ni21Mn18In6Co2Cu | (Ni43.75(Co4.17Cu2.08))Mn37.5In12.5 |
Fig. 1 Crystal structures of a A, b NM martensite, c 6 M martensite, d ground-state total energy of each phase in ferromagnetic state and ferrimagnetic state with different Cu occupation manners
Fig. 3 Formation energies of A, 6 M, and NM phases for Cu substituted at different sites in Ni21Mn18In6Co3 alloy. Formation energies of the three phases of Ni21Mn18In6Co3 alloy from Ref. [12] are also represented as a reference
Fig. 4 Energy difference ΔE(FA-6 M), ΔE(FA-NM), and ΔE(6 M-NM) for Cu substituted at different sites in Ni21Mn18In6Co3 alloy. Energy difference between the phases of Ni21Mn18In6Co3 alloy from Ref. [12] is also represented as a reference
Occupation manners | Phase | a (Å) | b (Å) | c (Å) | β (Å) | c/a | V0 (Å3) |
---|---|---|---|---|---|---|---|
CuNi | A | 5.943 | 5.943 | 5.943 | 90 | - | 52.48 |
6 M | 4.173 | 5.442 | 12.475 | 91.77 | - | 52.48 | |
NM | 4.213 | 4.213 | 5.905 | 90 | 1.402 | 52.41 | |
CuMn1 | A | 5.925 | 5.925 | 5.925 | 90 | - | 52.01 |
6 M | 4.357 | 5.452 | 13.015 | 97.58 | - | 51.08 | |
NM | 4.213 | 4.213 | 5.863 | 90 | 1.392 | 52.07 | |
CuMn2 | A | 5.928 | 5.928 | 5.928 | 90 | - | 52.09 |
6 M | 4.211 | 5.887 | 12.601 | 90.39 | - | 52.06 | |
NM | 3.808 | 3.808 | 7.015 | 90 | 1.842 | 50.95 | |
CuIn | A | 5.909 | 5.909 | 5.909 | 90 | - | 51.60 |
6 M | 4.191 | 5.869 | 12.561 | 90.03 | - | 51.50 | |
NM | 4.192 | 4.192 | 5.869 | 90 | 1.40 | 51.54 | |
CuCo | A | 5.943 | 5.943 | 5.943 | 90 | - | 52.47 |
6 M | 4.219 | 5.873 | 12.683 | 90.48 | - | 52.38 | |
NM | 4.298 | 4.298 | 5.476 | 90 | 1.274 | 51.37 |
Table 2 Optimized equilibrium lattice constants of A, 6 M, and NM phases for Cu substituted at different sites in Ni21Mn18In6Co3 alloy. Black italics mean FIM ground states, while the others mean FM ground states
Occupation manners | Phase | a (Å) | b (Å) | c (Å) | β (Å) | c/a | V0 (Å3) |
---|---|---|---|---|---|---|---|
CuNi | A | 5.943 | 5.943 | 5.943 | 90 | - | 52.48 |
6 M | 4.173 | 5.442 | 12.475 | 91.77 | - | 52.48 | |
NM | 4.213 | 4.213 | 5.905 | 90 | 1.402 | 52.41 | |
CuMn1 | A | 5.925 | 5.925 | 5.925 | 90 | - | 52.01 |
6 M | 4.357 | 5.452 | 13.015 | 97.58 | - | 51.08 | |
NM | 4.213 | 4.213 | 5.863 | 90 | 1.392 | 52.07 | |
CuMn2 | A | 5.928 | 5.928 | 5.928 | 90 | - | 52.09 |
6 M | 4.211 | 5.887 | 12.601 | 90.39 | - | 52.06 | |
NM | 3.808 | 3.808 | 7.015 | 90 | 1.842 | 50.95 | |
CuIn | A | 5.909 | 5.909 | 5.909 | 90 | - | 51.60 |
6 M | 4.191 | 5.869 | 12.561 | 90.03 | - | 51.50 | |
NM | 4.192 | 4.192 | 5.869 | 90 | 1.40 | 51.54 | |
CuCo | A | 5.943 | 5.943 | 5.943 | 90 | - | 52.47 |
6 M | 4.219 | 5.873 | 12.683 | 90.48 | - | 52.38 | |
NM | 4.298 | 4.298 | 5.476 | 90 | 1.274 | 51.37 |
Fig. 7 Total spin down DOS of A, 6 M, and NM phases for Cu substituted at different sites in Ni21Mn18In6Co3 alloy. The zero energy is set as the EF. The inset shows the zoomed view of total DOS near the EF
[1] | Y. Sutou, Y. Imano, N. Koeda, T. Omori, R. Kainuma, K. Ishida, Appl. Phys. Lett. 85, 4358 (2004). |
[2] | Y. Shen, W. Sun, Z.Y. Wei, Q. Shen, Y.F. Zhang, J. Liu, Scr. Mater. 163, 14 (2019). |
[3] | S. Yang, C. Wang, Z. Shi, J. Wang, J. Zhang, Y. Huang, X. Liu, Mater. Sci. Eng. A655, 204 (2016). |
[4] | J.J. Yang, Z.B. Li, X.L. Zhang, B. Yang, X. Zhao, L. Zuo, AIP Adv. 11, 015244 (2021). |
[5] | X.M. Huang, Y. Zhao, H.L. Yan, N. Jia, S. Tang, J. Bai, B. Yang, Z.B. Li, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, Scr. Mater. 185, 94 (2020). |
[6] | Z.Z. Li, Z.B. Li, D. Li, J.J. Yang, B. Yang, Y. Hu, D.H. Wang, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, Acta Mater. 192, 52 (2020). |
[7] | Y.H. Qu, D.Y. Cong, S.H. Li, W.Y. Gui, Z.H. Nie, M.H. Zhang, Y. Ren, Y.D. Wang, Acta Mater. 151, 41 (2018). |
[8] | A.S. Turabi, H.E. Karaca, H. Tobe, B. Basaran, Y. Aydogdu, Y.I. Chumlyakov, Scr. Mater. 111, 110 (2016). |
[9] | E. Pagounis, R. Chulist, M.J. Szczerba, M. Laufenberg, Appl. Phys. Lett. 105, 052405 (2014). |
[10] | Z.B. Li, J.J. Yang, D. Li, Z.Z. Li, B. Yang, H.L. Yan, C.F. Sánchez-Valdés, J.L. Sánchez Llamazares, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, Adv. Electron. Mater. 5, 1800845 (2019). |
[11] | R. Kainuma, Y. Imano, W. Ito, Y. Sutou, H. Morito, S. Okamoto, O. Kitakami, K. Oikawa, A. Fujita, T. Kanomata, K. Ishida, Nature 439, 957 (2006). |
[12] | X.Z. Liang, J. Bai, J. Gu, H. Yan, Y. Zhang, C. Esling, X. Zhao, L. Zuo, J. Mater. Sci. Technol. 44, 31 (2020). |
[13] | M. Kaya, S. Yildirim, E. Yüzüak, I. Dincer, R. Ellialtioglu, Y. Elerman, J. Magn. Magn. Mater. 368, 191 (2014). |
[14] | S. Saritas, M. Kaya, I. Dincer, Y. Elerman, Metall. Mater. Trans. A. 48, 5068 (2017). |
[15] | J. Bai, D. Liu, J.L. Gu, S.F. Shi, X.Z. Liang, H.L. Yan, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, J. Magn. Magn. Mater. 516, 167363 (2020). |
[16] | J.P. Camarillo-Garcia, F. Hernández-Navarro, D.E. Soto-Parra, D. Ríos-Jara, H. Flores-Zúñiga, Scr. Mater. 166, 92 (2019). |
[17] | G. Kresse, D. Joubert, Phys. Rev. B 59, 1758 (1999). |
[18] | P.E. Blochl,, Phys. Rev. B. Condens. Matter. 50, 17953 (1994). |
[19] | J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77, 3865 (1996). |
[20] | H.J. Monkhorst, J.D. Pack, Phys. Rev. B 13, 5188 (1976). |
[21] | X.Z. Liang, J. Bai, J.L. Gu, J.L. Wang, H.L. Yan, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, Acta Mater. 195, 109 (2020). |
[22] | A. Kundu, S. Ghosh, S. Ghosh, Phys. Rev. B96, 174107 (2017). |
[23] | T. Mehaddene, J. Neuhaus, W. Petry, K. Hradil, P. Bourges, A. Hiess, Phys. Rev. B 78, 104110 (2008). |
[24] | S. Ghosh, S. Ghosh, Phys. Rev. B 101, 024109 (2020). |
[25] | Z.B. Li, N. Xu, Y.D. Zhang, C. Esling, J.M. Raulot, X. Zhao, L. Zuo, Acta Mater. 61, 3858 (2013). |
[26] | N. Xu, J.M. Raulot, Z.B. Li, Y.D. Zhang, J. Bai, W. Peng, X.Y. Meng, X. Zhao, L. Zuo, C. Esling, J. Alloys Compd. 614, 126 (2014). |
[27] | C.M. Li, H.B. Luo, Q.M. Hu, R. Yang, B. Johansson, L. Vitos, Phys. Rev. B 82, 024201 (2010). |
[28] | Y. Song, X. Chen, V. Dabade, T.W. Shield, R.D. James, Nature 502, 85 (2013). |
[29] | J. Cui, Y.S. Chu, O.O. Famodu, Y. Furuya, J. Hattrick-Simpers, R.D. James, A. Ludwig, S. Thienhaus, M. Wuttig, Z. Zhang, I. Takeuchi, Nat. Mater. 5, 286 (2006). |
[30] | Z. Wu, Z. Liu, H. Yang, Y. Liu, G. Wu, Intermetallics 19, 1839(2011). |
[31] | Z.B. Li, Y.W. Jiang, Z.Z. Li, C.F. Sánchez Valdés, J.L. Sánchez Llamazares, B. Yang, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, IUCrJ 5, 54 (2018). |
[32] | H.L. Yan, H.X. Liu, Y. Zhao, N. Jia, J. Bai, B. Yang, Z.B. Li, Y.D. Zhang, C. Esling, X. Zhao, L. Zuo, J. Mater. Sci. Technol. 74, 27 (2021). |
[33] | Z.N. Zhou, H. Akamine, J. Li, L. Yang, T. Higashizono, Q.D. Hu, M. Nishida, J.G. Li, J. Alloys Compd. 817, 153150 (2020). |
[34] | M. Siewert, M.E. Gruner, A. Hucht, H.C. Herper, A. Dannenberg, A. Chakrabarti, N. Singh, R. Arroyave, P. Entel, Adv. Eng. Mater. 14, 530 (2012). |
[35] | C. Bungaro, K.M. Rabe, A. Dal Corso, Phys. Rev. B 68, 134104 (2003). |
[36] | D. Zhao, J. Liu, X. Chen, W. Sun, Y. Li, M. Zhang, Y. Shao, H. Zhang, A. Yan, Acta Mater. 133, 217 (2017). |
[37] | Y.H. Qu, D.Y. Cong, X.M. Sun, Z.H. Nie, W.Y. Gui, R.G. Li, Y. Ren, Y.D. Wang, Acta Mater. 134, 236 (2017). |
[38] | S. Roy, E. Blackburn, S.M. Valvidares, M.R. Fitzsimmons, S.C. Vogel, M. Khan, I. Dubenko, S. Stadler, N. Ali, S.K. Sinha, J.B. Kortright, Phys. Rev. B 79, 235127 (2009). |
[39] | E. Şaşıoğlu, L.M. Sandratskii, P. Bruno, Phys. Rev. B 70, 024427 (2004). |
[40] | E. Şaşıoğlu, L.M. Sandratskii, P. Bruno, Phys. Rev. B 71, 214412 (2005). |
[41] | S. Ghosh, S. Ghosh, Phys. Rev. B 99, 064112 (2019). |
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