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Original Articles

Hydrogen storage in Ti–Zr and Ti–Hf-based quasicrystals

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Pages 957-964 | Received 15 May 2005, Accepted 08 Aug 2005, Published online: 19 Aug 2006

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Soo-bin Choi, Sang-hwa Lee & Jae yong Kim. (2011) Pressure–composition–temperature curves and structure stability induced by hydrogen in TiZrNi quasicrystals. Philosophical Magazine 91:19-21, pages 2937-2943.
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R. Nicula, K. Ishizaki, M. Stir, Z. Shen & S. Vaucher. (2011) Rapid synthesis and densification of single-phase Al–Cu–Fe quasicrystals by spark plasma sintering or microwave heating. Philosophical Magazine 91:19-21, pages 2450-2457.
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Articles from other publishers (34)

Jin Jung Kweon, Hyo-Im Kim, Sang-hwa Lee, Jaeyong Kim & Sung Keun Lee. (2022) Quantitative probing of hydrogen environments in quasicrystals by high-resolution NMR spectroscopy. Acta Materialia 226, pages 117657.
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Yuta Shimohata, Yoshiki Hamamoto, Kengo Nishi & Katsuaki Tanabe. (2021) Improved kinetic model of hydrogen absorption and desorption in titanium with subsurface transport. Fusion Engineering and Design 173, pages 112833.
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Yue Liu, Zhiwen Zhu, Fang Liu & Jia Xu. (2021) Nonlinear dynamic characteristics and bifurcation analysis of Ti–Zr–Ni quasicrystal as hydrogen storage material. International Journal of Hydrogen Energy 46:31, pages 16667-16675.
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T. Hu, X.M. Huang, J.H. Li, J. Zhang, G.M. Cai & Z.P. Jin. (2020) Experimental investigation and thermodynamic calculation of Ti-Hf-Mn system. Calphad 70, pages 101776.
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Farid Labib, Nobuhisa Fujita, Satoshi Ohhashi & An-Pang Tsai. (2020) Icosahedral quasicrystals and their cubic approximants in the Cd-Mg-RE (RE = Y, Sm, Gd, Tb, Dy, Ho, Er, Tm) systems. Journal of Alloys and Compounds 822, pages 153541.
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Sang-hwa Lee, Ashfia Huq, Wenge Yang & Jaeyong Kim. (2018) Analysis of local sites of deuterium in Ti53Zr27Ni20 alloys. Physica B: Condensed Matter 551, pages 33-36.
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Sang-hwa Lee & Jaeyong Kim. (2018) Structure and hydrogen absorption properties of Ti53Zr27Ni20(Pd,V) quasicrystals. International Journal of Hydrogen Energy 43:41, pages 19130-19140.
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Dedetemo Kimilita Patrick, Akito Takasaki & Alicja Klimkowicz. (2018) RETRACTED - High discharge capacities of Ti-based quasicrystal electrodes synthesized by mechanical alloying. MRS Advances 3:38, pages 2271-2279.
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Fei Liang, Jing Lin, Yaoming Wu & Limin Wang. (2017) Enhanced electrochemical hydrogen storage performance of Ti V Ni composite employing NaAlH 4. International Journal of Hydrogen Energy 42:21, pages 14633-14640.
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Jing Lin, Zhanyi Cao, Lianshan Sun, Fei Liang, Yaoming Wu & Limin Wang. (2017) Enhanced electrochemical properties of Ti1.4V0.6Ni with Mo2C or WC coating as negative electrodes for Ni-MH battery. Journal of Alloys and Compounds 695, pages 208-214.
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Jing Lin, Lianshan Sun, Fei Liang, Yaoming Wu, Zhanyi Cao & Limin Wang. (2016) Effect of MWNTs-addition on cathodic performance of Ti-V-Ni composites for Ni-MH batteries. International Journal of Hydrogen Energy 41:22, pages 9471-9475.
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Lianshan Sun, Jing Lin, Zhanyi Cao, Fei Liang & Limin Wang. (2015) Electrochemical hydrogen storage properties of Ti1.4V0.6Ni alloy comprising quasicrystal coating with Cu. Journal of Alloys and Compounds 650, pages 15-21.
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Tomoki Tominaga, Akito Takasaki, Tsuyoshi Shibato & Konrad Świerczek. (2015) HREM observation and high-pressure composition isotherm measurement of Ti45Zr38Ni17 quasicrystal powders synthesized by mechanical alloying. Journal of Alloys and Compounds 645, pages S292-S294.
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Huang Huogen, Chen Liang, Du Xiaoqing & Li Rong. (2015) Deuterium Storage of Ti39Zr38Ni17Pd6 Icosahedral Quasi-crystal. Rare Metal Materials and Engineering 44:7, pages 1581-1586.
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Kun Liu, Jinming Shang, Zhongtao Ouyang, Yuhan Duan, Cheng Xing, Yuegang Fu, Fei Liang, Jing Lin, Wanqiang Liu & Limin Wang. (2015) Electrochemical hydrogen storage properties of Ti1.4V0.6Ni quasicrystal and TiH composite materials. Journal of Alloys and Compounds 630, pages 158-162.
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M. Balcerzak, J. Jakubowicz, T. Kachlicki & M. Jurczyk. (2015) Hydrogenation properties of nanostructured Ti2Ni-based alloys and nanocomposites. Journal of Power Sources 280, pages 435-445.
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Huogen Huang & Liang Chen. Speculation of equilibrium pressure of Ti36Zr40Ni20Pd4 icosahedral quasicrystal. Speculation of equilibrium pressure of Ti36Zr40Ni20Pd4 icosahedral quasicrystal.
H Huang, D Q Meng, X C Lai, T W Liu, Y Long & Q M Hu. (2014) Structure of Bergman-type W -TiZrNi approximants to quasicrystal, analyzed by lattice inversion method . Journal of Physics: Condensed Matter 26:31, pages 315003.
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Jing Lin, Fei Liang, Yaoming Wu, Wanqiang Liu & Limin Wang. (2014) Hydrogen storage properties of Ti1.4V0.6Ni + x Mg (x = 1–3, wt.%) alloys. International Journal of Hydrogen Energy 39:7, pages 3313-3319.
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Dominika Baster, Akito Takasaki, Chihiro Kuroda, Emil Hanc, Sang-Hwa Lee, Konrad Świerczek, Janusz S. Szmyd, Jae-Yong Kim & Janina Molenda. (2013) Effect of mechanical milling on electrochemical properties of Ti45Zr38xNi17+x (x=0, 8) quasicrystals produced by rapid-quenching. Journal of Alloys and Compounds 580, pages S238-S242.
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Youhei Ariga, Akito Takasaki, Cihiro Kuroda & A. Kulka. (2013) Electrochemical properties of Ti45−xZr30+xNi25 (x=−4, 0, 4) quasicrystal and amorphous electrodes produced by mechanical alloying. Journal of Alloys and Compounds 580, pages S251-S254.
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Wen Hu, Jianhong Yi, Biju Zheng & Limin Wang. (2013) Icosahedral quasicrystalline (Ti1.6V0.4Ni)100−xScx alloys: Synthesis, structure and their application in Ni-MH batteries. Journal of Solid State Chemistry 202, pages 1-5.
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Hongsik Shin, Sang-hwa Lee, Youngsoo Jo & Jaeyong Kim. (2012) Effects of hydrogen on the magnetic properties of TiZrNi quasicrystals. Journal of the Korean Physical Society 61:9, pages 1541-1544.
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Huogen Huang, Tianwei Liu, Zhi Zhang, Xiaoqiu Ye, Lizhu Luo & Xiangdong Zhang. (2012) Deuterium storage of Ti40Zr40Ni20 icosahedral quasicrystal. International Journal of Hydrogen Energy 37:20, pages 15204-15209.
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Wen Hu, Lidong Wang & Limin Wang. (2011) Quinary icosahedral quasicrystalline Ti–V–Ni–Mn–Cr alloy: A novel anode material for Ni-MH rechargeable batteries. Materials Letters 65:19-20, pages 2868-2871.
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Bao Zhong Liu, Yan Ping Fan, Bao Qing Zhang & Zhi Zhang. (2011) Hydrogen Storage Property of Ti<sub>45</sub>Zr<sub>35</sub>Ni<sub>17</sub>Cu<sub>3</sub> Quasicrystal Powder. Advanced Materials Research 287-290, pages 553-557.
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J. W. Phair & M. A. Gibson. 2011. Membranes for Membrane Reactors. Membranes for Membrane Reactors 435 457 .
Huo Gen HuangRong LiLiang Chen. (2010) Similarity of Deuterium Absorption at Room Temperature for Different Ti-Zr-Ni Quasicrystals. Advanced Materials Research 150-151, pages 88-91.
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Huogen HUANG, Liang CHEN, Rong LI & Deli LUO. (2010) THERMAL STABILITY AND DEUTERIUM ABSORPTION AT ROOM TEMPERATURE OF Ti<SUB>36</SUB>Zr<SUB>40</SUB>Ni<SUB>20</SUB>Pd<SUB>4</SUB> QUASICRYSTAL. ACTA METALLURGICA SINICA 46:5, pages 629-633.
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M. P. Belov, É. I. Isaev & Yu. Kh. Vekilov. (2010) Hydrogen in the approximant i-TiZrHf: The energy state, charge, and diffusion. Physics of the Solid State 52:6, pages 1111-1114.
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Wen Hu, Xiao D. Niu, Masaharu Watada, Yoshiteru Kawabe, Yao M. Wu, Li D. Wang & Li M. Wang. (2010) Electrochemical Hydrogen Storage in Ti 1.6 V 0.4 Ni1â x Co x Icosahedral Quasicrystalline Alloys . ChemPhysChem 11:1, pages 295-300.
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Wen Hu, Jianli Wang, Lidong Wang, Yaoming Wu & Limin Wang. (2009) Electrochemical hydrogen storage in (Ti1−V )2Ni (x= 0.05–0.3) alloys comprising icosahedral quasicrystalline phase. Electrochimica Acta 54:10, pages 2770-2773.
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Baozhong Liu, Yaoming Wu & Limin Wang. (2006) Crystallographic and electrochemical characteristics of icosahedral quasicrysyalline Ti45−xZr35−xNi17+2xCu3 (x=0–8) powders. Journal of Power Sources 162:1, pages 713-718.
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R. G. Hennig, E. H. Majzoub & K. F. Kelton. (2006) Location and energy of interstitial hydrogen in the approximant - of the icosahedral quasicrystal: Rietveld refinement of x-ray and neutron diffraction data and density-functional calculations . Physical Review B 73:18.
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