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Progress in Chemistry 2011, Vol. 23 Issue (5): 829-841 Previous Articles   Next Articles

• Invited Article •

Phase Transitions in Light Elements under Pressure

Li Quan, Ma Yanming   

  1. State Key Lab of Superhard Materials, Jilin University, Changchun 130012, China
  • Received: Revised: Online: Published:
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Pressure as a very important dimension independent of temperature and chemical compositions, can effectively change the inter-atomic interaction, induce the formation of high pressure structures with new physical properties, reveal new phenomena and physical rules, and fabricate new materials that can not be synthesized under ambient pressure. At ambient conditions, elements usually adopt simple structures; however, application of pressure induces complex phase transitions with the formation of intriguing high pressure phases, some of which possess novel superconductivity and superhard properties, and even experience metal-insulator transitions. These high pressure phase transitions have attracted worldwide attention. This article reviews the structural transitions of the first 12 light elements in the periodical table under pressure, and discusses novel properties of the new high pressure phases and the corresponding phase transition mechanisms. The prospects of the future experimental and theoretical methods for investigation of high pressure phase transitions are presented.

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[1] Tonkov E Y, Ponyatovsky E G. Phase Transformations of Elements Under High Pressure. CRC Press, 2005
[2] McMillan P F. Nature Materials, 2002, 1: 19-25
[3] Buzea C, Robbie K. Superconductor Science and Technology, 2005, 18: R1-R8
[4] Eremets M I, Struzhkin V V, Mao H, Hemley R J. Science, 2001, 293: 272-274
[5] Shimizu K, Suhara K, Ikumo M, Eremets M I, Amaya K. Nature, 1998, 393: 767-769
[6] Struzhkin V V, Hemley R J, Mao H, Timofeev Y A. Nature, 1997, 390: 382-384
[7] Ma Y M, Eremets M, Oganov A R, Xie Y, Trojan I, Medvedev S, Lyakhov A O, Valle M, Prakapenka V. Nature, 2009, 458: 182-185
[8] Loubeyre P, LeToullec R, Hausermann D, Hanfland M, Hemley R J, Mao H K, Finger L W. Nature, 1996, 383: 702-704
[9] Mao H, Hemley R J. Reviews of Modern Physics, 1994, 66: 671-692
[10] Ginzburg V L. Ginzburg V L. Key Problems in Physics and Astrophysics. in Waynflete Lectures on Physics: Selected Topics in Contemporary Physics and Astrophysics (A84-21334 08-70) Translation 1983. Oxford: Pergamon Press, 1983. 1-45
[11] Goncharenko I, Loubeyre P. Nature, 2005, 435: 1206-1209
[12] Goncharov A F, Hemley R J, Mao H, Shu J. Physical Review Letters, 1998, 80: 101-104
[13] Kitamura H, Tsuneyuki S, Ogitsu T, Miyake T. Nature, 2000, 404: 259-262
[14] Kohanoff J, Scandolo S, Chiarotti G L, Tosatti E. Physical Review Letters, 1997, 78: 2783-2786
[15] Nagao K, Nagara H. Physical Review Letters, 1998, 80: 548-551
[16] Nagao K, Takezawa T, Nagara H. Physical Review B, 1999, 59: 13741-13753
[17] Stdele M, Martin R M. Physical Review Letters, 2000, 84: 6070-6073
[18] Cui L, Chen N H, Silvera I F. Physical Review B, 1995, 51: 14987-14997
[19] Johnson K A, Ashcroft N W. Nature, 2000, 403: 632-635
[20] Cui T, Cheng E, Alder B J, Whaley K B. Physical Review B, 1997, 55: 12253-12266
[21] Kaxiras E, Guo Z. Physical Review B, 1994, 49: 11822-11832
[22] Maksimov E G, Shilov Y I. Uspekhi Fizicheskikh Nauk, 169, 1142-1223
[23] Pickard C J, Needs R J. Nature Physics, 2007, 3: 473-476
[24] Zhang L J, Niu Y L, Cui T, Li Y, Wang Y, Ma Y M, He Z, Zou G T. Journal of Physics: Condensed Matter, 2006, 18: 9917-9927
[25] Zhang L J, Niu Y L, Cui T, Li Y, Ma Y M, He Z, Zou G T. Journal of Physics: Condensed Matter, 2007, 19: art. no. 425237
[26] Bonev S A, Schwegler E, Ogitsu T, Galli G. Nature, 2004, 431: 669-672
[27] Eremets M I, Trojan I A. JETP Letters, 2009, 89: 174-179
[28] Ashcroft N W. Journal of Physics: Condensed Matter, 2000, 12: art. no. A129
[29] Bardeen J, Cooper L N, Schrieffer J R. Physical Review, 1957, 108: 1175-1204
[30] Bardeen J, Cooper L N, Schrieffer J R. Physical Review, 1957, 106: 162-164
[31] Papaconstantopoulos D A, Boyer L L, Klein B M, Williams A R, Morruzzi V L, Janak J F. Physical Review B, 1977, 15: 4221-4226
[32] Caron L G. Physical Review B, 1974, 9: 5025-5038
[33] Klein B M, Papaconstantopoulos D A. Physical Review Letters, 1974, 32: 1193-1195
[34] Barbee T W, Cohen M L. Physical Review B, 1991, 43: 5269-5275
[35] Maksimov E G, Savrasov D Y. Solid State Communications, 2001, 119: 569-572
[36] Zhang L, Niu Y, Li Q, Cui T, Wang Y, Ma Y, He Z, Zou G. Solid State Communications, 2007, 141: 610-614
[37] Narayana C, Luo H, Orloff J, Ruoff A L. Nature, 1998, 393: 46-49
[38] Neaton J B, Ashcroft N W. Nature, 1999, 400: 141-144
[39] Ma Y, Oganov A R, Xie Y. Physical Review B, 2008, 78: art. no. 14102
[40] Raty J Y, Schwegler E, Bonev S A. Nature, 2007, 449: 448-451
[41] Neaton J B, Ashcroft N W. Physical Review Letters, 2001, 86: 2830-2833
[42] Goncharov A F, Struzhkin V V, Mao H, Hemley R J. Physical Review B, 2005, 71: art. no. 184114
[43] Hanfland M, Loa I, Syassen K. Physical Review B, 2002, 65: art. no. 184109
[44] Olinger B, Shaner J W. Science, 1983, 219: 1071-1072
[45] Hanfland M, Syassen K, Christensen N E, Novikov D L. Nature, 2000, 408: 174-178
[46] Struzhkin V V, Eremets M I, Gan W, Mao H, Hemley R J. Science, 2002, 298: 1213-1215
[47] Matsuoka T, Shimizu K. Nature, 2009, 458: 186-189
[48] Matsuoka T, Onoda S, Kaneshige M, Nakamoto Y, Shimizu K, Kagayama T, Ohishi Y. J. Physics: Conference Series 121, 2008, art. no. 052003
[49] Gregoryanz E, Lundegaard L F, McMahon M I, Guillaume C, Nelmes R J, Mezouar M. Science, 2008, 320: 1054-1057
[50] McMahon M I, Gregoryanz E, Lundegaard L F, Loa I, Guillaume C, Nelmes R J, Kleppe A K, Amboage M, Wilhelm H, Jephcoat A P. Proceedings of the National Academy of Sciences, 2007, 104: 17297-17299
[51] Xie Y, Tse J S, Cui T, Oganov A R, He Z, Ma Y, Zou G. Physical Review B, 2007, 75: art. no. 64102
[52] Xie Y, Ma Y M, Cui T, Li Y, Qiu J, Zou G T. New Journal of Physics, 2008, 10: art. no. 063022
[53] Lin T H, Dunn K J. Physical Review B, 1986, 33: 807-811
[54] Shimizu K, Ishikawa H, Takao D, Yagi T, Amaya K. Nature, 2002, 419: 597-599
[55] Deemyad S, Schilling J S. Physical Review Letters, 2003, 91: art. no. 167001
[56] Shimizu K. Journal of Physics: Condensed Matter, 2007, 19: art. no. 125207
[57] Tuoriniemi J, Juntunen-Nurmilaukas K, Uusvuori J, Pentti E, Salmela A, Sebedash A. Nature, 2007, 447: 187-189
[58] Ma Y, Oganov A R, Glass C W. Physical Review B, 2007, 76: art. no. 064101
[59] Glass C W, Oganov A R, Hansen N. Comput. Phys. Commun., 2006, 175: 713-720
[60] Oganov A R, Glass C W. J. Chem. Phys., 2006, 124: art. no. 244704
[61] Oganov A R, Glass C W, Ono S. Earth Planet Sci. Lett., 2006, 241: 95-103
[62] Li Q, Wang M, Oganov A R, Cui T, Ma Y M, Zou G. J. Appl. Phys., 2009, 105: art. no. 053514
[63] Gao G, Oganov A R, Bergara A, Martinez-Canales M, Cui T, Iitaka T, Ma Y, Zou G. Phys. Rev. Lett., 2008, 101: art. no. 107002
[64] Li Q, Ma Y, Oganov A R, Wang H, Wang H, Xu Y, Cui T, Mao H K, Zou G. Phys. Rev. Lett., 2009, 102: art. no. 175506
[65] Wang H, Li Q, Li Y, Xu Y, Cui T, Oganov A R, Ma Y. Phys. Rev. B, 2009, 79: art. no. 132109
[66] Xie Y, Oganov A R, Ma Y, However T. Physical Review Letters, 104: art. no. 177005
[67] Gao G, Oganov A R, Li P, Li Z, Wang H, Cui T, Ma Y, Bergara A, Lyakhov A O, Iitaka T. Proceedings of the National Academy of Sciences, 2010, 107: 1317-1320
[68] Li Q, Wang H, Tian Y, Xia Y, Cui T, He J, Ma Y, Zou G. Journal of Applied Physics, 108: art. no. 023507
[69] Wang H, Li Q, Liu H, Cui T, Ma Y. The Journal of Physical Chemistry C, 114: 8609-8613
[70] Zhang M, Wang H, Cui T, Ma Y. The Journal of Physical Chemistry C, 114: 6722-6725
[71] Zhang X, Wang H, Ma Y. Journal of Physics: Condensed Matter, 22: art. no. 046006
[72] Li Z, Wang H, Li Y, Ma Y, Cui T, Zou G. New Journal of Physics, 12: art. no. 043058
[73] Oganov A R, Glass C W. The Journal of Chemical Physics, 2006, 124: art. no. 244704
[74] 李印威 (Li Y W), 马琰铭(Ma Y M). 中国科学: 物理学 力学 天文学(Scientia Sinica Pysica, Mechanica & Astronomica), 2010, 40(2): 146-157
[75] Velisavljevic N, Chesnut G N, Vohra Y K, Weir S T, Malba V, Akella J. Physical Review B, 2002, 65: art. no. 172107
[76] Reichlin R L. Review of Scientific Instruments, 1983, 54: 1674-1677
[77] Nakano K, Akahama Y, Kawamura H. Journal of Physics: Condensed Matter, 2002, 14: 10569-10573
[78] Palanivel B, Rao R S, Godwal B K, Sikka S K. Journal of Physics: Condensed Matter, 2000, 12: 8831-8836
[79] Sin'ko G V, Smirnov N A. Physical Review B, 2005, 71: art. no. 214108
[80] Robert G, Sollier A. J. de Physique Ⅳ, 2006, 134: 257-262
[81] Olijnyk H, Holzapfel W B. Physical Review B, 1985, 31: 4682-4683
[82] Winzenick M, Holzapfel W B. High Pressure Science and Technology (Ed. Trzeciakowski W). Singapore: World Sci., 1996. 384-386
[83] Wang Y, Lv J, Zhu L, Ma Y. Physical Review B, 2010: art. no. 094116
[84] Li P, Gao G, Wang Y, Ma Y. Journal of Physical Chemistry C, 2010, 114: 21745-21749
[85] Douglas B E, Ho S M. Structure and Chemistry of Crystalline Solids. Springer, 2006. 48-49
[86] Amberger E, Ploog K. J. Less. Common. Met., 1971, 23: 21-31
[87] Vlasse M, Naslain R, Kasper J S, Ploog K. J. Solid State Chem., 1979, 28: 289-301
[88] Kurakevych O O. Journal of Superhard Materials, 2009, 31: 139-157
[89] Masago A, Shirai K, Katayama-Yoshida H. Physical Review B, 2006, 73: art. no. 104102
[90] van Setten M J, Uijttewaal M A, de Wijs G A, de Groot R A. J. Am. Chem. Soc., 2007, 129: 2458-2465
[91] Oganov A R, Chen J, Gatti C, Ma Y, Glass C W, Liu Z, Yu T, Kurakevych O O, Solozhenko V L. Nature, 2009, 457: 863-867
[92] Ma Y, Tse J S, Klug D D, Ahuja R. Physical Review B, 2004, 70: art. no. 214107
[93] Ma Y, Prewitt C T, Zou G, Mao H K, Hemley R J. Physical Review B, 2003, 67: art. no. 174116
[94] Miller E D, Nesting D C, Badding J V. Chem. Mater., 1997, 9: 18-22
[95] Li Q, Ma Y, Oganov A R, Wang H, Xu Y, Cui T, Mao H K, Zou G. Physical Review Letters, 2009, 102: art. no. 175506
[96] Ekimov E A, Sidorov V A, Bauer E D, Mel'nik N N, Curro N J, Thompson J D, Stishov S M. Nature, 2004, 428: 542-545
[97] Ma Y, Tse J S, Cui T, Klug D D, Zhang L, Xie Y, Niu Y, Zou G. Physical Review B, 2005, 72: art. no. 014306
[98] Sumiya H, Irifune T. J. Mater. Res., 2007, 22: 2345-2351
[99] Irifune T, Kurio A, Sakamoto S, Inoue T, Sumiya H. Nature, 2003, 421: 806-806
[100] Bundy E P, Kasper J S. J. Chem. Phys., 1967, 46: 3437-3446
[101] Patterson J R, Catledge S A, Vohra Y K, Akella J, Weir S T. Phys. Rev. Lett., 2000, 85: 5364-5367
[102] Goncharov A F, Makarenko I N, Stishov S M. Sov. Phys. JETP 1989, 69: 380
[103] Hanfland M, Syassen K, Sonnenschein R. Phys. Rev. B, 1989, 40: 1951-1954
[104] Utsumi W, Yagi T. Science, 1991, 252: 1542-1544
[105] Hanfland M, Beister H, Syassen K. Phys. Rev. B, 1989, 39: 12598-12603
[106] Xu J, Mao H K, Hemley R J. J. Phys. Condens. Matter., 2002, 14: art. no. 11549
[107] Zhao Y, Spain I L. Phys. Rev. B., 1989, 40: 993-997
[108] Yagi T, Utsumi W, Yamakata M, Kikegawa T, Shimomura O. Phys. Rev. B, 1992, 46: 6031-6039
[109] Mao W L, Mao H K, Eng P J, Trainor T P, Newville M C C, Kao D L H, Shu J, Meng Y, Hemley R J. Science, 2003, 302: 425-427
[110] Goncharov A F. High Pressure Res., 1992, 8: 607-616
[111] Bundy F P, Bassett W A, Weathers M S, Hemley R J, Mao H K, Goncharov A F. Carbon, 1996, 34: 141-153
[112] Liang Y, Zhang W, Chen L. EPL (Europhysics Letters), 2009, 87: art. no. 56003
[113] Itoh M, Kotani M, Naito H, Sunada T, Kawazoe Y, Adschiri T. Physical Review Letters, 2009, 102: art. no. 55703
[114] Umemoto K, Wentzcovitch R M, Saito S, Miyake T. Physical Review Letters, 2010, 104: art. no. 125504
[115] Yao Y, Tse J S, Sun J, Klug D D, Martoňák R, Iitaka T. Physical Review Letters, 2009, 102: art. no. 229601
[116] Bini R, Ulivi L, Kreutz J, Jodl H J. Journal of Chemical Physics, 2000, 112: 8522-8529
[117] Eremets M I, Gavriliuk A G, Serebryanaya N R, Trojan I A, Dzivenko D A, Boehler R, Mao H K, Hemley R J. The Journal of Chemical Physics, 2004, 121: art. no. 11296
[118] Nellis W J, Holmes N C, Mitchell A C, van Thiel M. Physical Review Letters, 1984, 53: 1661-1664
[119] Gregoryanz E, Goncharov A F, Hemley R J, Mao H K. Physical Review B, 2001, 64: art. no. 052103
[120] Eremets M I, Hemley R J, Mao H, Gregoryanz E. Nature, 2001, 411: 170-174
[121] Nellis W J, Radousky H B, Hamilton D C, Mitchell A C, Holmes N C, Christianson K B, van Thiel M. The Journal of Chemical Physics, 1991, 94: 2244-2258
[122] Goncharov A F, Gregoryanz E, Mao H K, Liu Z, Hemley R J. Physical Review Letters, 2000, 85: art. no. 1262
[123] Mailhiot C, Yang L H, McMahan A K. Physical Review B, 1992, 46: art. no. 14419
[124] Martin R M, Needs R J. Physical Review B, 1986, 34: art. no. 5082
[125] Lewis S P, Cohen M L. Physical Review B, 1992, 46: art. no. 11117
[126] Mattson W D, Sanchez-Portal D, Chiesa S, Martin R M. Physical Review Letters, 2004, 93: art. no. 125501
[127] Yao Y, Tse J S, Tanaka K. Physical Review B, 2008, 77: art. no. 052103
[128] Eremets M I, Gavriliuk A G, Trojan I A, Dzivenko D A, Boehler R. Nature Materials, 2004, 3: 558-563
[129] Ma Y, Oganov A R, Li Z, Xie Y, Kotakoski J. Physical Review Letters, 2009, 102: art. no. 065501
[130] Meier R J, Helmholdt R B. Physical Review B, 1984, 29: art. no. 1387
[131] English C A, Venables J A. Proceedings of the Royal Society of London Series A, Mathematical and Physical Sciences, 1974, 57-80
[132] Horl E M. Acta Crystallographica, 1962, 15: 845-850
[133] LeSar R, Etters R D. Physical Review B, 1988, 37: art. no. 5364
[134] Gorelli F A, Santoro M, Ulivi L, Hanfland M. Physical Review B, 2002, 65: art. no. 172106
[135] Schiferl D, Cromer D T, Mills R L. Acta Crystallographica Section B: Structural Science, 1981, 37: 1329-1332
[136] d'Amour H, Holzapfel W B, Nicol M. The Journal of Physical Chemistry, 1981, 85: 130-131
[137] Schiferl D, Cromer D T, Schwalbe L A, Mills R L. Acta Crystallographica Section B: Structural Science, 1983, 39: 153-157
[138] Fujihisa H, Akahama Y, Kawamura H, Ohishi Y, Shimomura O, Yamawaki H, Sakashita M, Gotoh Y, Takeya S, Honda K. Physical Review Letters, 2006, 97: art. no. 085503
[139] Goncharenko I N. Physical Review Letters, 2005, 94: art. no. 205701
[140] Neaton J B, Ashcroft N W. Physical Review Letters, 2002, 88: art. no. 205503
[141] Serra S, Chiarotti G, Scandolo S, Tosatti E. Physical Review Letters, 1998, 80: art. no. 5160
[142] Desgreniers S, Vohra Y K, Ruoff A L. Journal of Physical Chemistry, 1990, 94: 1117-1122
[143] Akahama Y, Kawamura H, Hausermann D, Hanfland M, Shimomura O. Physical Review Letters, 1995, 74: 4690-4693
[144] Goncharov A F, Gregoryanz E, Hemley R J, Mao H K. Physical Review B, 2003, 68: art. no. 100102
[145] Weck G, Loubeyre P, LeToullec R. Physical Review Letters, 2002, 88: art. no. 035504
[146] Weck G, Desgreniers S, Loubeyre P, Mezouar M. Physical Review Letters, 2009, 102: art. no. 255503
[147] Pauling L, Keaveny I, Robinson A B. Journal of Solid State Chemistry, 1970, 2: 225-227
[148] Jordan T H, Streib W E, Lipscomb W N. Journal of Chemical Physics, 1964, 41: 760-764
[149] Young D A, Zha C S, Boehler R, Yen J, Nicol M, Zinn A S, Schiferl D, Kinkead S, Hanson R C, Pinnick D A. Physical Review B, 1987, 35: 5353-5356
[150] Schiferl D, Kinkead S, Hanson R C, Pinnick D A. The Journal of Chemical Physics, 1987, 87: 3016-3021
[151] Nellis W J, Holmes N C, Mitchell A C, Trainor R J, Governo G K, Ross M, Young D A. Physical Review Letters, 1984, 53: 1248-1251
[152] Loubeyre P, LeToullec R, Pinceaux J P, Mao H K, Hu J, Hemley R J. Physical Review Letters, 1993, 71: 2272-2275
[153] Mao H K, Hemley R J, Wu Y, Jephcoat A P, Finger L W, Zha C S, Bassett W A. Physical Review Letters, 1988, 60: 2649-2652
[154] Loubeyre P, LeToullec R, Pinceaux J P, Mao H K, Hu J, Hemley R J. Physical Review Letters, 1993, 71: art. no. 2272
[155] Franck J P, Daniels W B. Physical Review Letters, 1980, 44: 259-262
[156] Franck J P, Daniels W B. Physical Review B, 1981, 24: 2456-2467
[157] Ryschkewitsch M G, Franck J P, Duch B J, Daniels W B. Physical Review B, 1982, 26: 5276-5278
[158] Loubeyre P, Letoullec R, Pinceaux J P. Physical Review Letters, 1992, 69: 1216-1219
[159] Takemura K, Watanuki T, Ohwada K, Machida A, Ohmura A, Aoki K. Journal of Physics: Conference Series, 2010, 215: art. no. 012017
[160] Hemley R J, Zha C S, Jephcoat A P, Mao H K, Finger L W, Cox D E. Physical Review B, 1989, 39: 11820-11827
[161] Goedecker S. The Journal of Chemical Physics, 2004, 120: 9911-9917
[162] Deem M W, Newsam J M. Nature, 1989, 342: 260-262
[163] Pannetier J, Bassas-Alsina J, Rodriguez-Carvajal J, Caignaert V. Nature, 1990, 346: 343-345
[164] Boisen M B, Gibbs G V, Bukowinski M S T. Physics and Chemistry of Minerals, 1994, 21: 269-284
[165] Schn J C, Jansen M. Angewandte Chemie International Edition in English, 1996, 35: 1286-1304
[166] Martoňák R, Laio A, Parrinello M. Physical Review Letters, 2003, 90: art. no. 75503
[167] Martoňák R, Laio A, Bernasconi M, Ceriani C, Raiteri P, Zipoli F, Parrinello M. Zeitschrift für Kristallographie, 2005, 220: 489-498
[168] Martoňk R, Donadio D, Oganov A R, Parrinello M. Nature Materials, 2006, 5: 623-626
[169] Pickard C J, Needs R J. Physical Review Letters, 2006, 97: art. no. 45504
[170] Abraham N L, Probert M I J. Physical Review B, 2006, 73: art. no. 224104
[171] Woodley S M, Battle P D, Gale J D, Catlow C R A. Physical Chemistry Chemical Physics, 1999, 1: 2535-2542
[172] Trimarchi G, Zunger A. Physical Review B, 2007, 75: art. no. 104113
[173] Ma Y M, Wang Y C, Lü J, Zhu L. http://nlshm-lab.jlu.edu.cn/~calypso.html.
[174] Lü J, Wang Y C, Zhu L, Ma Y M. Physical Review Letters, 2011, 106: art. no. 015503
[175] Zhu L, Wang H, Wang Y C, Lü J, Ma Y M, Cui Q L, Ma Y M, Zhou G T. Physical Review Letters, 2011, 106: art. no. 145501
[176] Liu H Y, Li Q, Zhu L, Ma Y M. Solid State Communications, 2011, 151: 716-719
[177] Liu H Y, Li Q, Zhu L, Ma Y M. Physics Letters A, 2011, 375: 771-774

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