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Original Articles

Cu-based icosahedral quasicrystal formed in Cu-Ga-Mg-Sc alloys

Pages 483-493 | Published online: 14 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

S. Koshiya, M. Terauchi, S. Ohhashi & A.P. Tsai. (2013) Characteristic chemical shifts of quasicrystalline Zn–Mg–Zr alloys studied by EELS and SXES. Philosophical Magazine 93:18, pages 2250-2258.
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Tsutomu Ishimasa, Yukinori Tanaka & Shiro Kashimoto. (2011) Icosahedral quasicrystal and 1/1 cubic approximant in Au–Al–Yb alloys. Philosophical Magazine 91:33, pages 4218-4229.
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Tsutomu Ishimasa, Arina Hirao, Takahiro Honma & Marek Mihalkovič. (2011) Crystal structure of 1/0-2/1-1/0 Cu–Al–Sc approximant. Philosophical Magazine 91:19-21, pages 2594-2602.
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An Pang Tsai. (2008) Icosahedral clusters, icosaheral order and stability of quasicrystals—a view of metallurgy∗. Science and Technology of Advanced Materials 9:1.
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S. Kashimoto, C. Masuda, S. Motomura, S. Matsuo & T. Ishimasa. (2007) Formation and magnetic properties of p-type icosahedral quasicrystals in Zn–Fe–Sc–L (L = Ho, Er, Tm) alloys. Philosophical Magazine 87:18-21, pages 2929-2937.
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T. Honma & T. Ishimasa. (2007) New icosahedral quasicrystals formed in Cu-based ternary alloys. Philosophical Magazine 87:18-21, pages 2721-2726.
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Y. G. So, A. Shimizu, K. Edagawa & S. Takeuchi. (2006) Formation of crystal approximants to icosahedral quasicrystal in Sc-based alloys. Philosophical Magazine 86:3-5, pages 373-379.
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Ryo Maezawa, Shiro Kashimoto & Tsutomu Ishimasa. (2004) Icosahedral quasicrystals in Zn–T–Sc (T = Mn, Fe, Co or Ni) alloys. Philosophical Magazine Letters 84:4, pages 215-223.
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Qisheng Lin & John D. Corbett . (2003) New stable icosahedral quasicrystalline phase in the Sc–Cu–Zn system . Philosophical Magazine Letters 83:12, pages 755-762.
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Articles from other publishers (30)

Haikun Ma, Liangqun Zhao, Zhi-Yi Hu, Dinghao Miao, Ruixuan Li, Tulai Sun, He Tian, Tiantian Zhang, Hua Li, Yong Zhang & Zhanbing He. (2020) Near-equiatomic high-entropy decagonal quasicrystal in Al20Si20Mn20Fe20Ga20Al20Si20Mn20Fe20Ga20中近等原子比高熵十次准晶. Science China Materials 64:2, pages 440-447.
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Zhengming Wang, Tzu-Yi Chang & Donghua Xu. (2021) Spontaneously formed quasicrystal grains in a pure metal. AIP Advances 11:1.
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Yeong-Gi So, Koji Kimoto & Keiichi Edagawa. (2015) Formation of an Icosahedral Quasicrystal and Its Approximant in Au-Al-Sc System. MATERIALS TRANSACTIONS 56:4, pages 495-499.
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Dmitri V. Louzguine-Luzgin & A.Yu. Churyumov. (2014) Dual-phase glassy/nanoscale icosahedral phase materials in Cu–Zr–Ti–Pd system alloys. Materials Characterization 96, pages 6-12.
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Can Cui, Masahiko Shimoda & An Pang Tsai. (2014) Studies on icosahedral Ag–In–Yb: a prototype for Tsai-type quasicrystals. RSC Adv. 4:87, pages 46907-46921.
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Cesar Pay Gómez & An Pang Tsai. (2014) Crystal chemistry and chemical order in ternary quasicrystals and approximants. Comptes Rendus Physique 15:1, pages 30-39.
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Devinder Singh, Dharmendra Singh, T. P. Yadav, R. K. Mandal, R. S. Tiwari & O. N. Srivastava. (2013) Synthesis and Indentation Behavior of Amorphous and Nanocrystalline Phases in Rapidly Quenched Cu–Ga–Mg–Ti and Cu–Al–Mg–Ti Alloys. Metallography, Microstructure, and Analysis 2:5, pages 321-327.
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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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Erkan Tetik, Murat Durandurdu & Faruk Karadağ. (2012) Nanoscale icosahedral packing in amorphous Mg 50 Ni 50 : An ab initio study . EPL (Europhysics Letters) 100:2, pages 26002.
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Murat Durandurdu. (2012) Nanosize icosahedral quasicrystal in Mg90Ca10 glass: An ab initio molecular dynamics study . The Journal of Chemical Physics 137:3.
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Yeong-Gi So, Takuro Yoshikawa, Fukuaki Saruhashi, Keiichi Edagawa & Ryuji Tamura. (2011) Formation of Icosahedral Quasicrystals and 1/1 Crystal Approximants in Al-Pd-RE (RE: Rare Earth Metals) Systems. MATERIALS TRANSACTIONS 52:11, pages 2011-2015.
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Devinder Singh, T. P. Yadav, R. S. Tiwari & O. N. Srivastava. (2009) Phase formation in rapidly quenched Cu-based alloys. Journal of Materials Science 44:14, pages 3883-3888.
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Yeong-Gi So & Keiichi Edagawa. (2009) Formation of Icosahedral Quasicrystal and Its 1/1 Crystal Approximant in Al-Pd-Sc System. MATERIALS TRANSACTIONS 50:5, pages 948-951.
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Steurer Walter & Sofia DeloudiWalter Steurer & Sofia Deloudi. 2009. Crystallography of Quasicrystals. Crystallography of Quasicrystals 291 319 .
Qisheng Lin & John D. Corbett. 2009. Controlled Assembly and Modification of Inorganic Systems. Controlled Assembly and Modification of Inorganic Systems 1 39 .
D.V. Louzguine-LuzginA. Inoue. (2008) Formation and Properties of Quasicrystals. Annual Review of Materials Research 38:1, pages 403-423.
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Tsutomu Ishimasa. 2008. Quasicrystals. Quasicrystals 49 74 .
Dmitri V. Louzguine-Luzgin, Alain Reza Yavari, Mikio Fukuhara, Katsumi Ota, Guoqiang Xie, Gavin Vaughan & Akihisa Inoue. (2007) Free volume and elastic properties changes in Cu–Zr–Ti–Pd bulk glassy alloy on heating. Journal of Alloys and Compounds 431:1-2, pages 136-140.
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Qisheng Lin & John D. Corbett. (2006) The 1/1 and 2/1 Approximants in the Sc−Mg−Zn Quasicrystal System:  Triacontahedral Clusters as Fundamental Building Blocks. Journal of the American Chemical Society 128:40, pages 13268-13273.
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S. Ranganathan & A. Inoue. (2006) An application of Pettifor structure maps for the identification of pseudo-binary quasicrystalline intermetallics. Acta Materialia 54:14, pages 3647-3656.
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Qisheng Lin & John D. Corbett. (2005) Electronic Tuning of Mg 2 Cu 6 Ga 5 . A Route to Crystalline Approximant and Quasicrystalline Phases . Journal of the American Chemical Society 127:37, pages 12786-12787.
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N. Chen, D.V. Louzguine-Luzgin, T. Kubota, S. Ranganathan & A. Inoue. (2005) Formation of amorphous and icosahedral phases in Ti–Zr–Hf–LTM (LTM=Ni, Pd or Pt) alloys. Scripta Materialia 53:2, pages 213-216.
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Qisheng Lin & John D. Corbett. (2004) Synthesis and Structure of Five Sc 3 Cu y Zn 18 - y -Type Compositions (0 ≤ y ≤ ∼2.2), 1/1 Crystalline Approximants of a New Icosahedral Quasicrystal. Direct Example of Tuning on the Basis of Size Effects and Hume−Rothery Concepts . Inorganic Chemistry 43:6, pages 1912-1919.
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Hidetoshi Yamada, Senni Motomura, Ryo Maezawa, Yasushi Kaneko, Tsutomu Ishimasa, Hiroshi Nakano & Susumu Matsuo. (2004) Magnetic and electrical properties of a Cu–Ga–Mg–Sc icosahedral quasicrystal. Journal of Non-Crystalline Solids 334-335, pages 398-402.
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H.S Jeevan & S Ranganathan. (2004) A new basis for the classification of quasicrystals. Journal of Non-Crystalline Solids 334-335, pages 184-189.
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Yasushi Kaneko, Ryo Maezawa & Tsutomu Ishimasa. (2004) The formation condition of a stable Cu–Ga–Mg–Sc icosahedral quasicrystal. Journal of Non-Crystalline Solids 334-335, pages 8-11.
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Tsutomu Ishimasa, Yasushi Kaneko & Hiroshi Kaneko. (2004) New group of stable icosahedral quasicrystals: structural properties and formation conditions. Journal of Non-Crystalline Solids 334-335, pages 1-7.
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Keisuke Yamamoto, Yoshisato Kimura & Yoshinao Mishima. (2004) Precipitation of the Icosahedral Quasicrystalline Phase, R-phase and Laves Phase in Ferritic Alloys. MATERIALS TRANSACTIONS 45:2, pages 357-360.
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Qisheng Lin & John D. Corbett. (2003) A Study of the Phase Mg 2 Cu 6 Ga 5 , Isotypic with Mg 2 Zn 11 . A Route to an Icosahedral Quasicrystal Approximant . Inorganic Chemistry 42:26, pages 8762-8767.
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Tsutomu Ishimasa, Shiro Kashimoto & Ryo Maezawa. (2011) Search and Synthesis of New Family of Quasicrystals. MRS Proceedings 805.
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