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In-situ high pressure X-ray diffraction studies of orthoferrite SmFeO3 |
Li Na-Na (李娜娜), Li Yan (李岩), Li Hui (李会), Tang Rui-Lian (唐瑞莲), Zhao Yong-Sheng (赵永胜), Han Dan-Dan (韩丹丹), Ma Yan-Mei (马艳梅), Cui Qi-Liang (崔启良), Zhu Pin-Wen (朱品文), Wang Xin (王欣) |
State Key Laboratory of Superhard Materials, Jilin University, Changchun 130012, China |
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Abstract The high-pressure behaviors of SmFeO3 are investigated by angle-dispersive synchrotron X-ray powder diffraction under a pressure of up to 40.3 GPa at room temperature. The crystal structure of SmFeO3 remains stable at up to the highest pressure. The different pressure coefficients of the normalized axial compressibility are obtained to be β a = 0.60×10-3 GPa-1, β b = 0.79×10-3 GPa-1, β c = 1.28×10-3 GPa-1, and the bulk modulus (B0) is determined to be 293(3) GPa by fitting the pressure-volume data using the Birch-Murnaghan equation of state. Furthermore, the larger compressibility of the FeO6 octahedra suggests the evolution of the orthorhombic structure towards higher symmetry configuration at high pressures.
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Received: 31 October 2013
Revised: 24 November 2013
Accepted manuscript online:
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PACS:
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91.60.Gf
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(High-pressure behavior)
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61.05.cp
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(X-ray diffraction)
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61.50.-f
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(Structure of bulk crystals)
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Fund: Project supported by the National Natural Science Foundation of China (Grant No. 51172091), the Program for New Century Excellent Talents in University, China, and the National Fund for Fostering Talents of Basic Science, China (Grant No. J1103202). |
Corresponding Authors:
Zhu Pin-Wen, Wang Xin
E-mail: zhupw@jlu.edu.cn;xin_wang@jlu.edu.cn
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Cite this article:
Li Na-Na (李娜娜), Li Yan (李岩), Li Hui (李会), Tang Rui-Lian (唐瑞莲), Zhao Yong-Sheng (赵永胜), Han Dan-Dan (韩丹丹), Ma Yan-Mei (马艳梅), Cui Qi-Liang (崔启良), Zhu Pin-Wen (朱品文), Wang Xin (王欣) In-situ high pressure X-ray diffraction studies of orthoferrite SmFeO3 2014 Chin. Phys. B 23 069101
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[1] |
Geller S and Wood E A 1956 Acta Crystallogr. 9 563
|
[2] |
Lyubutin I S, Dmitrieva T V and Stepin A S 1999 Zh. Éksp. Teor. Fiz. 115 1070
|
[3] |
Shen S T and Weng H S 1998 Ind. Eng. Chem. Res. 37 2654
|
[4] |
Kharton V V, Yaremchenko A A, Kovalevsky A V, Viskup A P, Naumovich E N and Kerko P F 1999 J. Membr. Sci. 163 307
|
[5] |
Kharton V V, Yaremchenko A A and Kharton E N 1999 J. Solid State Electrochem. 3 303
|
[6] |
Kuscer D, Hrovat M, Hoic J, Bernik S and Kolar D 1996 J. Power Sources 61 161
|
[7] |
Traversa E, Matsushima S, Okadab G, Sadaokab Y, Sakaib Y and Watanabe K 1995 Sens. Actuators B 25 661
|
[8] |
Schmool D S, Keller N, Guyot M, Krishnan R and Tessier M 1999 J. Appl. Phys. 86 5712
|
[9] |
Sakakima H, Satomi M, Hirota E and Adachi H 1999 IEEE Trans. Magn. 35 2958
|
[10] |
Zheng L and Wu X S 2013 Chin. Phys. B 22 107806
|
[11] |
Yang Y, Liu Y L, Zhu K, Zhang L Y, Ma S Y, Liu J and Jiang Y J 2010 Chin. Phys. B 19 037802
|
[12] |
Wang H C, Wang C L, Zhang J L, Zhao M L, Liu J, Su W B, Yin N and Mei L M 2009 Chin. Phys. Lett. 26 107301
|
[13] |
Prasad B V, Narsinga Rao G, Chen J W and Suresh Babu D 2011 Mater. Res. Bull. 46 1670
|
[14] |
Kahn F J, Pershan P S and Remeika J P 1969 Phys. Rev. 186 891
|
[15] |
Lee J H, Jeong Y K, Park J H, Oak M A, Jang H M, Son J Y and Scott J F 2011 Phys. Rev. Lett. 107 117201
|
[16] |
Marshall L G, Cheng J G, Zhou J S, Goodenough J B, Yan J Q and Mandrus D G 2012 Phys. Rev. B 86 064417
|
[17] |
Pasternak M P, Taylor R D, Jeanloz R, Li X, Nguyen J H and McCammon C A 1997 Phys. Rev. Lett. 79 5046
|
[18] |
Li F Y, Jin C Q, Chen L C, Zhou B, Shi L C, Liu J, Li X D, Li Y C and Yu R C 2006 Chin. Phys. Lett. 23 911
|
[19] |
Ge B H, Li F H, Li X M, Wang Y M, Chi Z H and Jin C Q 2008 Chin. Phys. B 17 3163
|
[20] |
Rozenberg G Kh, Pasternak M P, Xu W M, Dubrovinsky L S, Carlson S and Taylor R D 2005 Europhys. Lett. 71 228
|
[21] |
Gavriliuk A G, Struzhkin V V, Lyubutin I S, Hu M Y and Mao H K 2005 JETP Lett. 82 224
|
[22] |
Arielly R, Xu W M, Greenberg E, Rozenberg G Kh, Pasternakl M P, Garbarino G, Clark S and Jeanloz R 2011 Phys. Rev. B 84 094109
|
[23] |
Hearne G R, Pasternak M P, Taylor R D and Lacorre P 1995 Phys. Rev. B 51 11495
|
[24] |
Mao H K and Bell P M 1978 Carnegie Institution of Washington Year Book, Vol. 77 (Washington: Carnegie Institute) p. 904
|
[25] |
Berenor A, Angoles E, Rossiny J, Raj E, Kilner J and Atkinson A 2008 Solid State Ionics 179 1090
|
[26] |
Larson A C and Von Dreele R B 2004 General Structure Analysis System (GSAS), Los Alamos National Laboratory Report LAUR 86 748
|
[27] |
Aroyo M I, Perez-Mato J M, Capillas C, Kroumova E, Ivantchev S, Kirov A, Madariaga G and Wondratschek H 2006 Z. Kristallogr. 221 15
|
[28] |
Zhao H J, Ren W, Yang Y R, Chen X M and Bellaiche L 2013 J. Phys.: Condens. Matter 25 466002
|
[29] |
Gavriliuk A G, Stepanov G N, Lyubutin I S, Stepinb A S, Trojan I A and Sidorov V A 2000 Hyperfine Interact. 126 305
|
[30] |
Angel R J, Zhao J, Ross N L, Jakeways C V, Redfern S A T and Berkowski M 2007 J. Solid State Chem. 180 3408
|
[31] |
Ross N L, Zhao J and Angel R J 2004 J. Solid State Chem. 177 3768
|
[32] |
Zhao J, Ross N L and Angel R J 2004 Acta Crystallogr. B 60 263
|
[33] |
Zhao J, Ross N L and Angel R J 2004 Acta Crystallogr. B 60 263
|
[34] |
Loa I, Adler P, Grzechnik A, Syassen K, Schwarz U, Hanfland M, Rozenberg G Kh, Gorodetsky P and Pasternak M P 2001 Phys. Rev. Lett. 87 125501
|
[35] |
Chen J M, Chou T L, Lee J M, Chan T S, Lu K T, Chuang W T, Sheu H S, Chen S W, Lin C M, Hiraoka N, Tsuei K D and Yang T J 2009 Phys. Rev. B 79 165110
|
[36] |
Lin C L, Zhang Y F, Liu J, Li X D, Li Y C, Tang L Y and Xiong L 2012 J. Phys.: Condens. Matter 24 115402
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