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Original Articles

Hume-Rothery stabilisation mechanism and d-states-mediated Fermi surface–Brillouin zone interactions in structurally complex metallic alloys

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Pages 2536-2542 | Received 20 May 2010, Accepted 12 Jul 2010, Published online: 06 Sep 2010

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Read on this site (5)

U. Mizutani, H. Sato, M. Inukai & E.S. Zijlstra. (2013) e/a determination for 4d- and 5d-transition metal elements and their intermetallic compounds with Mg, Al, Zn, Cd and In. Philosophical Magazine 93:24, pages 3353-3390.
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H. Sato, M. Inukai, E.S. Zijlstra & U. Mizutani. (2013) NFE approximation for the e/a determination for 3d-transition metal elements and their intermetallic compounds with Al and Zn. Philosophical Magazine 93:22, pages 3029-3061.
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M. Inukai, E.S. Zijlstra, H. Sato & U. Mizutani. (2011) Origin of the DOS pseudogap and Hume–Rothery stabilization mechanism in RT-type Al48Mg64Zn48 and Al84Li52Cu24 1/1-1/1-1/1 approximants. Philosophical Magazine 91:33, pages 4247-4263.
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Jean-Marie Dubois & Ron Lifshitz. (2011) Quasicrystals: diversity and complexity. Philosophical Magazine 91:19-21, pages 2971-2982.
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Articles from other publishers (13)

Sivaprasad Ghanta, Amit Mondal, Anustoop Das, Riju Dey, Mayra D. Silva Barcenas, Joyce Pham, Anup Kumar Bera, Bikash Saha, S.M. Yusuf, Janez Dolinšek & Partha Pratim Jana. (2023) Atomic site preference, electronic structures, and magnetic properties of γ-brass type pseudo-binary Mn2Zn11–Ni2Zn11 at high Mn-contents. Journal of Alloys and Compounds 932, pages 167599.
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Sivaprasad Ghanta, Anustoop Das, Partha Pratim Jana, Stanislav Vrtnik, Darja Gačnik, Jože Luzar, Andreja Jelen, Primož Koželj, Magdalena Wencka & Janez Dolinšek. (2021) Structure and Spin-Glass Magnetism of the Mn x Ni 2 Zn 11– x Pseudobinary γ-Brasses at Low Mn Contents . Inorganic Chemistry 60:16, pages 12226-12236.
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Florian Brix, Emilie Gaudry, Michel François, Erik Elkaïm, Clara Desgranges, Pierre Sallot, Stéphane Mathieu & Michel Vilasi. (2019) Structures of quaternary chromium silicides revealed by a combination of resonant X-ray diffraction and ab initio calculations. Intermetallics 105, pages 130-138.
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Jinglian Du & Bin Wen. (2017) Composition-structure-property correlations of complex metallic alloys described by the “cluster-plus-glue-atom” model. Applied Materials Today 7, pages 13-46.
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Yaoyao Linghu, Xiaozhi Wu, Rui Wang, Weiguo Li & Qing Liu. (2017) The Phase Stability, Ductility and Hardness of MoN and NbN: First-Principles Study. Journal of Electronic Materials 46:3, pages 1914-1925.
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Jinglian Du, Chuang Dong, Roderick Melnik, Yoshiyuki Kawazoe & Bin Wen. (2016) Hidden electronic rule in the “cluster-plus-glue-atom” model. Scientific Reports 6:1.
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Weiwei Xie & Gordon J. Miller. (2014) New Co–Pd–Zn γ-Brasses with Dilute Ferrimagnetism and Co 2 Zn 11 Revisited: Establishing the Synergism between Theory and Experiment . Chemistry of Materials 26:8, pages 2624-2634.
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U. Mizutani, M. Inukai, H. Sato & E.S. Zijlstra. 2014. Physical Metallurgy. Physical Metallurgy 103 202 .
An-Pang Tsai. (2013) Discovery of stable icosahedral quasicrystals: progress in understanding structure and properties. Chemical Society Reviews 42:12, pages 5352.
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U. Mizutani, M. Inukai, H. Sato & E. S. Zijlstra. (2012) Hume-Rothery stabilization mechanism and e/a determination for RT- and MI-type 1/1-1/1-1/1 approximants studied by FLAPW-Fourier analyses. Chemical Society Reviews 41:20, pages 6799.
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A. F. Prekul, N. I. Shchegolikhina, A. B. Gaiduchenko & K. I. Grushevskii. (2011) Electric, magnetic, and thermal properties of quasicrystal-forming melts. JETP Letters 94:5, pages 366-369.
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A. F. Prekul, N. I. Shchegolikhina, A. B. Gaiduchenko & K. I. Grushevskii. (2011) Comparative study of the heat capacity of icosahedral quasicrystals in solid and liquid states. Physics of the Solid State 53:10, pages 1987-1990.
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Sivaprasad Ghanta, Amit Mondal, Anustoop Das, Riju Dey, Mayra D. Silva, Joyce Pham, Anup Kumar Bera, Bikash Saha, S. M. Yusuf, Janez Dolinšek & Partha Pratim Jana. (2022) Atomic Site Preference, Electronic Structures, and Magnetic Properties of Γ-Brass Type Pseudo-Binary Mn2zn11–Ni2zn11 at High Mn-Contents. SSRN Electronic Journal.
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