Comptes Rendus
Quasicrystals / Quasicristaux
Surfaces of quasicrystals
[Les surfaces des quasicristaux]
Comptes Rendus. Physique, Volume 15 (2014) no. 1, pp. 48-57.

Les propriétés de surface remarquables des quasicristaux ont été à lʼorigine de nombreuses études concernant leurs structures atomiques et électroniques intrinsèques. Dans cet article, nous présentons un résumé des principales conclusions obtenues jusquʼà maintenant. Nous décrivons également des expériences dʼadsorption dans lesquelles des surfaces quasipériodiques sont utilisées comme patron pour la croissance de films minces de structures nouvelles. Finalement, nous discutons de quelques-unes des propriétés de surface qui sont actuellement étudiées pour dʼéventuelles applications.

The remarkable surface properties of quasicrystals have motivated extensive investigations of their intrinsic atomic and electronic structures. In this article, we summarize some of the main conclusions obtained so far. We also describe adsorption experiments where quasiperiodic surfaces are used as templates to grow thin films with novel structures. Finally we discuss some of their useful properties of current interest.

DOI : 10.1016/j.crhy.2013.09.009
Keywords: Quasicrystal, Surface science, Thin film growth
Mot clés : Quasicristaux, Science des surfaces, Films minces
Julian Ledieu 1 ; Vincent Fournée 1

1 Institut Jean-Lamour, UMR 7198 CNRS, Université de Lorraine, parc de Saurupt, CS 50840, 54011 Nancy, France
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Julian Ledieu; Vincent Fournée. Surfaces of quasicrystals. Comptes Rendus. Physique, Volume 15 (2014) no. 1, pp. 48-57. doi : 10.1016/j.crhy.2013.09.009. https://comptes-rendus.academie-sciences.fr/physique/articles/10.1016/j.crhy.2013.09.009/

[1] A. Garn; D. Levine Phys. Rev. Lett., 59 (1987), p. 1683

[2] C. Beeli; G. Gödecke; R. Lück Philos. Mag. Lett., 78 (1998), p. 339

[3] F. Kluge; M. Yureschko; K. Urban; P. Ebert Surf. Sci., 519 (2002), p. 33

[4] J. Dubois Useful Quasicrystals, World Scientific, Singapore, 2005

[5] B. Bolliger; M. Erbudak; D. Vvedensky; M. Zurkirch; A. Kortan Phys. Rev. Lett., 80 (1998), p. 5369

[6] Z. Shen; M. Kramer; C. Jenks; A. Goldman; T. Lograsso; D. Delaney; M. Heinzig; W. Raberg; P. Thiel Phys. Rev. B, 58 (1998), p. 9961

[7] B. Bolliger; M. Erbudak; A. Hensch; D. Vvedensky Mater. Sci. Eng. A, 859 (2000), pp. 294-296

[8] D. Naumović; P. Aebi; L. Schlapbach; C. Beeli Mater. Sci. Eng. A, 294–296 (2000), p. 882

[9] B. Bolliger; M. Erbudak; A. Hensch; A. Kortan; D. Vvedensky Mater. Res. Soc. Symp. Proc., 553 (1999), p. 257

[10] J. Ledieu; A. Munz; T. Parker; R. McGrath; R. Diehl; D. Delaney; T. Lograsso Surf. Sci., 433 (1999) no. 435, p. 665

[11] P. Ebert; F. Yue; K. Urban Phys. Rev. B, 57 (1998), p. 2821

[12] Z. Papadopolos; G. Kasner; J. Ledieu; E. Cox; N. Richardson; Q. Chen; R. Diehl; T. Lograsso; A. Ross; R. McGrath Phys. Rev. B, 66 (2002), p. 184207

[13] T. Schaub; D. Bürgler; H.-J. Güntherodt; J.-B. Suck Phys. Rev. Lett., 73 (1994), p. 1255

[14] Z. Shen; C. Stoldt; C. Jenks; T. Lograsso; P. Thiel Phys. Rev. B, 60 (1999), p. 14688

[15] J. Ledieu; E. Cox; R. McGrath; N. Richardson; Q. Chen; V. Fournée; T. Lograsso; A. Ross; K. Caspersen; B. Unal; J. Evans; P. Thiel Surf. Sci., 583 (2005), p. 4

[16] J. Ledieu; C. Muryn; G. Thornton; R. Diehl; D. Delaney; T. Lograsso; R. McGrath Surf. Sci., 472 (2000), p. 89

[17] R.M.R. Widmer; P. Gröning; W. Steurer; O. Gröning Phys. Rev. B, 87 (2013), p. 075425

[18] B. Unal; C. Jenks; P. Thiel Phys. Rev. B, 77 (2008), p. 195419

[19] J. Ledieu; R. McGrath; R. Diehl; T. Lograsso; A. Ross; Z. Papadopolos; G. Kasner Surf. Sci. Lett., 492 (2001), p. L729

[20] A. Katz; D. Gratias ICQ-5 (1995)

[21] V. Elser Philos. Mag., 73 (1996), p. 641

[22] L. Barbier; D.L. Flocʼh; Y. Calvayrac; D. Gratias Phys. Rev. Lett., 88 (2002), p. 85506

[23] M. Gierer; M.V. Hove; A. Goldman; Z. Shen; S.-L. Chang; C. Jenks; C.-M. Zhang; P. Thiel Phys. Rev. Lett., 78 (1997), p. 467

[24] Z. Papadopolos; P. Pleasants; G. Kasner; V. Fournée; C. Jenks; J. Ledieu; R. McGrath Phys. Rev. B, 69 (2004), p. 224201

[25] M.A. Bravais, Études cristallographiques, première partie : Du cristal considéré comme un simple assemblage de points. Présenté à lʼAcadémie des sciences, le 26 février 1849 (1849) 168.

[26] H. Sharma; V. Fournée; M. Shimoda; A. Ross; T. Lograsso; A. Tsai; A. Yamamoto Phys. Rev. Lett., 93 (2004), p. 165502

[27] Z. Stadnik; D. Purdie; M. Garnier; Y. Baer; A.-P. Tsai; A. Inoue; K. Edagawa; S. Takeuchi Phys. Rev. Lett., 77 (1996), p. 1777

[28] G.T. de Laissardière; T. Fujiwara Phys. Rev. B, 50 (1994), p. 5999

[29] M. Krajčí; M. Windisch; J. Hafner; G. Kresse; M. Mihalkovič Phys. Rev. B, 51 (1995), pp. 17355-17378

[30] C. Jenks; D. Delaney; T. Bloomer; S.-L. Chang; T. Lograsso; Z. Shen; C.-M. Zhang; P. Thiel Appl. Surf. Sci., 103 (1996), p. 485

[31] V. Fournée; P. Pinhero; J. Anderegg; T. Lograsso; A. Ross; P. Canfield; I. Fisher; P. Thiel Phys. Rev. B, 62 (2000), p. 14049

[32] R. Widmer; P. Gröning; M. Feuerbacher; O. Gröning Phys. Rev. B, 79 (2009), p. 104202

[33] G.T. de Laissardière; J.-P. Julien; D. Mayou Phys. Rev. Lett., 97 (2006), p. 026601

[34] M. Krajčí; J. Hafner; J. Ledieu; R. McGrath Phys. Rev. B, 73 (2006), p. 024202

[35] M. Krajčí; J. Hafner Phys. Rev. B, 71 (2005), p. 054202

[36] A. Tsai; J. Guo; E. Abe; H. Takakura; T. Sato Nature, 408 (2000) no. 6812, pp. 537-538

[37] J.Q. Guo; A.P. Tsai Philos. Mag. Lett., 82 (2002), p. 349

[38] H. Sharma; M. Shimoda; K. Sagisaka; H. Takakura; J.A. Smerdon; P. Nugent; R. McGrath; D. Fujita; S. Ohhashi; A.P. Tsai Phys. Rev. B, 80 (2009), p. 121401(R)

[39] Y. Ishii; T. Fujiwara Phys. Rev. Lett., 87 (2001), p. 206408

[40] R. Tamura; T. Takeuchi; C. Aoki; S. Takeuchi; T. Kiss; T. Yokoya; S. Shin Phys. Rev. Lett., 92 (2004), p. 146402

[41] H. Sharma; G. Simutis; V. Dhanak; P. Nugent; C. Cui; M. Shimoda; R. McGrath; A. Tsai; Y. Ishii Phys. Rev. B, 81 (2010), p. 104205

[42] H. Sharma; P. Nugent; J. Smerdon; M. Shimoda; S. Ohhashi; V. Fournée; J. Ledieu; A. Tsai J. Phys. Conf. Ser., 226 (2010), p. 012004

[43] H. Sharma; M. Shimoda; A. Tsai Adv. Phys., 56 (2007), p. 403

[44] H. Sharma; K. Franke; W. Theis; A. Riemann; S. Fölsch; P. Gille; K. Rieder Phys. Rev. B, 70 (2004), p. 235409

[45] R. Diehl; J. Ledieu; N. Ferralis; A. Szmodis; R. McGrath J. Phys. Condens. Matter, 15 (2003), p. R1-R19

[46] N. Ferralis; K. Pussi; E. Cox; M. Gierer; J. Ledieu; I. Fisher; C. Jenks; M. Lindroos; R. McGrath; R. Diehl Phys. Rev. B, 69 (2004), p. 153404

[47] E. Rotenberg; W. Theis; K. Horn; P. Gille Nature, 406 (2000), p. 602

[48] W. Theis; E. Rotenberg; K. Franke; P. Gille; K. Horn Phys. Rev. B, 68 (2003), p. 104205

[49] M. Kishida; T. Kamimura; R. Tamura; K. Edagawa; S. Takeuchi; T. Sato; Y. Yokoyama; J. Guo; A. Tsai Phys. Rev. B, 65 (2002), p. 94208

[50] H. Sharma; W. Theis; P. Gille; K. Rieder Surf. Sci., 511 (2002), p. 387

[51] H. Sharma; K. Franke; W. Theis; A. Riemann; S. Fölsch; P. Gille; K. Rieder Surf. Sci., 561 (2004), p. 121

[52] R. Mäder; R. Widmer; P. Gröning; S. Deloudi; W. Steurer; M. Heggen; P. Schall; M. Feuerbacher; O. Gröning Phys. Rev. B, 80 (2009), p. 035433

[53] T. Cai; J. Ledieu; R. McGrath; V. Fournée; T. Lograsso; A. Ross; P. Thiel Surf. Sci., 526 (2003), p. 115

[54] B. Ünal; V. Fournée; P. Thiel; J. Evans Phys. Rev. Lett., 102 (2009), p. 196103

[55] V. Fournée; H. Sharma; M. Shimoda; A. Tsai; B. Unal; A. Ross; T. Lograsso; P. Thiel Phys. Rev. Lett., 95 (2005), p. 155504

[56] P. Moras; Y. Weisskopf; J.-N. Longchamp; M. Erbudak; P.H. Zhou; L. Ferrari; C. Carbone Phys. Rev. B, 74 (2006), p. 121405

[57] V. Fournée; T. Cai; A. Ross; T. Lograsso; J. Evans; P. Thiel Phys. Rev. B, 67 (2003), p. 033406

[58] K. Franke; H. Sharma; W. Theis; P. Gille; P. Ebert; K. Rieder Phys. Rev. Lett., 89 (2002), p. 156104

[59] J. Ledieu; L. Leung; L. Wearing; R. McGrath; T. Lograsso; D. Wu; V. Fournée Phys. Rev. B, 77 (2008), p. 073409

[60] J. Ledieu; M. Krajčí; J. Hafner; L. Leung; L. Wearing; R. McGrath; T. Lograsso; D. Wu; V. Fournée Phys. Rev. B, 79 (2009), p. 245405

[61] M. Krajčí; J. Hafner; J. Ledieu; V. Fournée; R. McGrath Phys. Rev. B, 82 (2010), p. 085417

[62] T. Deniozou; J. Ledieu; V. Fournée; D.M. Wu; T.A. Lograsso; H.I. Li; R.D. Diehl Phys. Rev. B, 79 (2009), p. 245405

[63] Surface Properties and Engineering of Complex Intermetallics (E. Belin-Ferré, ed.), World Scientific, Singapore, 2010

[64] J.-M. Dubois; E. Belin-Ferré Complex Metallic Alloys, Wiley–VCH Verlag GmbH & Co., Weinheim, Germany, 2011

[65] J.Y. Park; D.F. Ogletree; M. Salmeron; R.A. Ribeiro; P.C. Canfield; C.J. Jenks; P.A. Thiel Science, 309 (2005), p. 1354

[66] J.Y. Park; D.F. Ogletree; M. Salmeron; R.A. Ribeiro; P.C. Canfield; C.J. Jenks; P.A. Thiel Phys. Rev. B, 74 (2006), p. 024203

[67] T. Masumoto, A. Inoue, Y. Corporation, H. Giken, K.K. Kaisha, Eur. Patent 0645464A2, Application number 94115137.5, 26 September 1994.

[68] C. Jenks; P.A. Thiel J. Mol. Catal. A, Chem., 131 (1998), pp. 301-306

[69] A.P. Tsai; M. Yoshimura Appl. Catal., 214 (2001), pp. 237-241

[70] T. Tanabe; S. Kameoka; A.P. Tsai Catal. Today, 111 (2006), pp. 153-157

[71] S.-L. Chang; W. Chin; C.-M. Zhang; C. Jenks; P. Thiel Surf. Sci., 337 (1995), p. 135

[72] S.-L. Chang; J. Anderegg; P. Thiel J. Non-Cryst. Solids, 195 (1996), p. 95

[73] P. Pinhero; S.-L. Chang; J. Anderegg; P. Thiel Philos. Mag. B, 75 (1997), p. 271

[74] C. Jenks; P. Pinhero; S.-L. Chang; J. Anderegg; M. Besser; D. Sordelet; P. Thiel New Horizons in Quasicrystals: Research and Applications (A.I. Goldman; D.J. Sordelet; P.A. Thiel; J.-M. Dubois, eds.), World Scientific, Singapore, 1997

[75] S. Suzuki; Y. Waseda; N. Tamura; K. Urban Scr. Mater., 35 (1996), p. 891

[76] D. Rouxel; P. Pigeat Prog. Surf. Sci., 81 (2006), pp. 488-514

[77] C. Jenks; T. Lograsso; P. Thiel J. Am. Chem. Soc., 120 (1998), p. 12668

[78] R. McGrath; J. Ledieu; E. Cox; S. Haq; R. Diehl; C. Jenks; I. Fisher; A. Ross; T. Lograsso J. Alloys Compd., 342 (2002), p. 432

[79] J.-T. Hoeft; J. Ledieu; S. Haq; T. Lograsso; A. Ross; R. McGrath Philos. Mag., 86 (2006), p. 869

[80] M. Yoshimura; A.P. Tsai J. Alloys Compd., 342 (2002), pp. 451-454

[81] S. Kameoka; A.P. Tsai Catal. Today, 93–95 (2004), pp. 23-26

[82] T. Tanabe; S. Kameoka; A.P. Tsai Appl. Catal. A, Gen., 384 (2010), pp. 241-251

[83] M. Armbrüster, K. Kovnir, Y. Grin, R. Schlögl, P. Gille, M. Heggen, M. Feuerbacher, Ordered cobalt-aluminum and iron-aluminum intermetallic compounds as hydrogenation catalysts, ep09157875.7, 2009.

[84] M. Armbrüster; K. Kovnir; M. Friedrich; D. Teschner; G. Wowsnick; M. Hahne; P. Gille; L. Szentmiklósi; M. Feuerbacher; M. Heggen; F. Girgsdies; D. Rosenthal; R. Schlögl; Y. Grin Nat. Mater., 11 (2012), pp. 690-693

[85] Y. Grin; B. Bauer; U. Burkhardt; R. Cardoso-Gil; J. Dolinšek; M. Feuerbacher; P. Gille; F. Haarmann; M. Heggen; P. Jeglič; M. Müller; S. Paschen; W. Schnelle; S. Vrtnik Nuremberg, Germany (2007)

[86] K. Kovnir; M. Armbrüster; D. Teschner; T. Venkov; F. Jentoft; A. Knop-Gericke; Y. Grin; R. Schlögl Sci. Technol. Adv. Mater., 8 (2007), p. 420

[87] J. Ledieu; E. Gaudry; L. Serkovic-Loli; S.A. Villaseca; M.-C. de Weerd; M. Hahne; P. Gille; Y. Grin; J.-M. Dubois; V. Fournée Phys. Rev. Lett., 110 (2013), p. 076102

[88] M. Krajčí; J. Hafner J. Catal., 278 (2011), p. 200

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