1997
DOI: 10.1103/physrevlett.78.464
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Structure of Liquid Aluminum Oxide

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Cited by 231 publications
(154 citation statements)
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“…Energy fluctuations were of 0.01 kJ/mol around the mean value although there was a temperature drift in the equilibration runs of plus or minus 40 K. Figure 1 shows the total radial distribution functions of the simulated system at 2260 and 2990 K. Figure 2 shows the structure factor S(q) for the system at 2260 K obtained by Fourier transforming the corresponding g(r). For the sake of comparison, the experimental results reported by Ansell et al 1 have also been included in these figures. The two curves corresponding to liquid alumina in Fig.…”
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confidence: 95%
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“…Energy fluctuations were of 0.01 kJ/mol around the mean value although there was a temperature drift in the equilibration runs of plus or minus 40 K. Figure 1 shows the total radial distribution functions of the simulated system at 2260 and 2990 K. Figure 2 shows the structure factor S(q) for the system at 2260 K obtained by Fourier transforming the corresponding g(r). For the sake of comparison, the experimental results reported by Ansell et al 1 have also been included in these figures. The two curves corresponding to liquid alumina in Fig.…”
mentioning
confidence: 95%
“…3 Recently a report of the experimental determination of the structure of liquid aluminum oxide has been published. 1 In order to complement this experiment, in this work we report the results of molecular-dynamics ͑MD͒ simulations of liquid aluminum oxide, and discuss a model to describe its structure.…”
mentioning
confidence: 99%
“…Droplets of 3-4 mm in diameter were suspended also by aerodynamic levitation in different gases (air, oxygen, nitrogen) and were heated by CO 2 laser radiation. The temperature range in the studies was 2200-2700 K. The results in (Ansell et al, 1997) show that the melting of -Al 2 O 3 affects radically the structure and coordination. In the melt, the Al-O coordination number is 4.4, i.e., (AlO 4 ) 5-tetrahedrons (the basis of the melt structure) contact with other tetrahedrons, and so the structure is like -Al 2 O 3 .…”
Section: Molten Aluminum Oxide Structure and Physicochemical Processementioning
confidence: 92%
“…These are experimental studies (Waseda, Sugiyama, & Toguri, 1995;Ansell, Krishnan, Weber, Felten, & Nordine, 1997;Landron, Hennet, & Thiaudiere, 2001;Krishnan et al, 2005) and molecular dynamics simulations (San Miguel, Sanz, Fernandes, Alvares, & Ordiozola, 1998;Gutierres, Belonoshko, Ahuja, & Johansson, 2000;Ahuja et al, 2004;Vashishta, Kalia, Nakano, & Rino, 2008). Although there are some disagreements between various studies, in most of them, except (Waseda et al, 1995), the conclusion is made that the short-range order in molten alumina is essentially defined by a (AlO 4 ) 5-basic unit, i. e., liquid Al 2 O 3 shows -phase-like coordination.…”
Section: Molten Aluminum Oxide Structure and Physicochemical Processementioning
confidence: 99%
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