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Original Articles

The electrical conductivity of fluid selenium up to supercritical temperatures and pressures

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Pages 255-259 | Received 25 Sep 1975, Published online: 02 Sep 2006

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Read on this site (3)

Helmut Hess, Hartmut Schneidenbach & Andreas Kloss. (1999) Critical Point and Metal-Nonmetal Transition in Expanded Liquid Metals. Physics and Chemistry of Liquids 37:6, pages 719-733.
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F. Hensel. (1979) Electrical properties of unusual ionic melts. Advances in Physics 28:4, pages 555-594.
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H. Labib, J. Fornazero & G. Mesnard. (1979) Procesus Electroniques dans le Sélénium Liquide. Physics and Chemistry of Liquids 8:4, pages 209-221.
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Articles from other publishers (66)

Yoshifumi Sakaguchi & Kozaburo Tamura. (2021) Photo-induced effects on amorphous and liquid selenium by pulsed laser illumination. Zeitschrift für Physikalische Chemie 235:1-2, pages 189-212.
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Masanori Inui, Yukio Kajihara & Kozaburo Tamura. (2021) Structural studies on fluid Hg and fluid Se at high temperatures and high pressures by means of X-ray diffraction and small angle X-ray scattering. Zeitschrift für Physikalische Chemie 235:1-2, pages 3-24.
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Jia Wei, Alfonso Cruz, Chunmeng Xu, Farhina Haque, Chanyeop Park & Lukas Graber. (2020) A Review on Dielectric Properties of Supercritical Fluids. A Review on Dielectric Properties of Supercritical Fluids.
Masanori Inui, Yukio Kajihara, Koji Kimura, Kazuhiro Matsuda, Koji Ohara, Satoshi Tsutsui, Daisuke Ishikawa & Alfred Q. Baron. Inelastic x-ray scattering studies on dynamic structure factor of polymeric liquid Se under pressure. Inelastic x-ray scattering studies on dynamic structure factor of polymeric liquid Se under pressure.
Akihide Koura & Fuyuki Shimojo. (2013) Concentration Dependence of the Dynamic Properties of Liquid Tl x Se 1- x Based on Ab initio Molecular-Dynamics Simulations . Journal of the Physical Society of Japan 82:9, pages 094602.
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Y.B. Wang, W.S. Dong, G. Zhao, J.X. Ding, S.H. Li & Y.J. Ge. (2012) Chain structure of liquid Se at high temperature and pressure investigated by ab initio molecular dynamics simulations. Journal of Non-Crystalline Solids 358:5, pages 873-879.
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Satoshi Ohmura & Fuyuki Shimojo. (2011) Ab initio molecular dynamics study of the metallization of liquid selenium under pressure . Physical Review B 83:13.
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X.F. Zhu & L.F. Chen. (2008) Ab initio molecular-dynamics simulation of liquid alloys. Physica B: Condensed Matter 403:18, pages 3302-3306.
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M. Inui, K. Sato, K. Mifune, K. Matsuda, D. Ishikawa & K. Tamura. (2007) Wide and small angle X-ray scattering measurements for expanded fluid Se accompanying the semiconductor–metal and metal–nonmetal transition. Journal of Non-Crystalline Solids 353:32-40, pages 3371-3375.
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Hiroaki Kajikawa, Shin Takahashi, Masaki Iwakoshi, Taiki Hoshino & Makoto Yao. (2007) Sound Velocity and Attenuation in the Semiconductor–Metal Transition Region of Fluid Selenium. Journal of the Physical Society of Japan 76:1, pages 014604.
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Fuyuki Shimojo & Kozo Hoshino. (2006) Chain structure and electronic states of liquid Rb-Se mixtures by ab initio molecular-dynamics simulations . Physical Review B 74:10.
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V. Sklyarchuk & Yu. Plevachuk. (2004) Reverse metal–non-metal transition in semiconducting melts. Journal of Non-Crystalline Solids 336:1, pages 59-63.
Crossref
Ayano Chiba, Yoshinori Ohmasa & Makoto Yao. (2003) Vibrational, single-particle-like, and diffusive dynamics in liquid Se, Te, and Te50Se50. The Journal of Chemical Physics 119:17, pages 9047-9062.
Crossref
Fuyuki Shimojo, Kozo Hoshino & Y. Zempo. (2003) Bonding Properties of Liquid Tellurium under Pressure: A Maximally Localized Wannier Function Approach with Ultrasoft Pseudopotentials. Journal of the Physical Society of Japan 72:10, pages 2417-2420.
Crossref
William W. WarrenJr.Jr.. (2003) Nuclear Magnetic Resonance in Expanded Fluid Metals. Zeitschrift für Physikalische Chemie 217:7, pages 775-782.
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Yoshifumi Sakaguchi & Kozaburo Tamura. 2003. Photo‐Induced Metastability in Amorphous Semiconductors. Photo‐Induced Metastability in Amorphous Semiconductors 199 219 .
Kazuma Nakamura & Atsushi Ikawa. (2003) Medium-range order in amorphous selenium: Molecular dynamics simulations. Physical Review B 67:10.
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Fuyuki Shimojo, Kozo Hoshino & Y. Zempo. (2002) Electronic and atomic structures of supercritical fluid selenium: ab initio molecular dynamics simulations. Journal of Non-Crystalline Solids 312-314, pages 290-293.
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Moynul Huq Kazi, Masanori Inui & Kozaburo Tamura. (2002) A study of density fluctuations near the critical point of fluid Se by small angle X-ray scattering. Journal of Non-Crystalline Solids 312-314, pages 279-283.
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Masanori Inui & Kozaburo Tamura. (2002) Structural studies of supercritical fluid metals using synchrotron radiation. Journal of Non-Crystalline Solids 312-314, pages 247-255.
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Moynul Huq Kazi, Masanori Inui & Kozaburo Tamura. (2001) Small angle X-ray scattering measurements for fluid selenium near the liquid–vapour critical point. Journal of Non-Crystalline Solids 293-295, pages 569-574.
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Fumiko Yonezawa, Hiroaki Ohtani & Toshio Yamaguchi. (2001) A new type of Bloch–Wilson metal–insulator transition in liquid Se near the critical point and under pressure. Journal of Non-Crystalline Solids 293-295, pages 199-203.
Crossref
A. A. Likalter. (2001) Structural transition and metallization in liquid selenium. Journal of Experimental and Theoretical Physics 93:2, pages 336-343.
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Kozaburo Tamura & Masanori Inui. (2001) Structural changes and the metal-non-metal transition in supercritical fluids. Journal of Physics: Condensed Matter 13:20, pages R337-R368.
Crossref
Fumiko Yonezawa, Hiroaki Ohtani & Toshio Yamaguchi. (2001) A completely new type of Bloch–Wilson nonmetal-to-metal transition. Physica B: Condensed Matter 296:1-3, pages 289-300.
Crossref
Hiroaki Ohtani, Toshio Yamaguchi & Fumiko Yonezawa. (2000) Nonmetal-Metal Transition in Expanded Selenium by the Spin Density Functional Method. Journal of the Physical Society of Japan 69:12, pages 3885-3895.
Crossref
J.-Y Raty, A Saùl, J.-P Gaspard & C Bichara. (2000) Structural and electronic properties of high-temperature fluid selenium. Computational Materials Science 17:2-4, pages 239-242.
Crossref
K Hoshino, F Shimojo & Y Zempo. (2000) Metal-semiconductor transition in liquid-alkali-Te mixtures: ab initio molecular-dynamics simulations . Journal of Physics: Condensed Matter 12:8A, pages A189-A194.
Crossref
Alexander A. Likal'ter. (2000) Critical points of condensation in Coulomb systems. Uspekhi Fizicheskih Nauk 170:8, pages 831.
Crossref
Fuyuki Shimojo, Kozo Hoshino & Y Zempo. (1999) Effects of spin polarization on the structural and electronic properties of supercritical fluid selenium: ab initio molecular-dynamics simulations . Journal of Physics: Condensed Matter 11:45, pages 8829-8838.
Crossref
Fuyuki Shimojo, Kozo Hoshino, Y Zempo & Mitsuo Watabe. (1999) Structural and electronic properties of supercritical fluid selenium: an ab initio molecular-dynamics simulation. Journal of Non-Crystalline Solids 250-252, pages 542-546.
Crossref
Fumiko Yonezawa, Hiroaki Ohtani & Toshio Yamaguchi. (1999) Electronic and structural properties of fluid selenium at high pressures and temperatures – a new mechanism of non-metal-to-metal transition. Journal of Non-Crystalline Solids 250-252, pages 510-518.
Crossref
William W WarrenJr.Jr.. (1999) Electronic structure and transitions of liquid selenium at high temperatures and pressures. Journal of Non-Crystalline Solids 250-252, pages 506-509.
Crossref
J. Y. Raty, A. Saùl, J. P. Gaspard & C. Bichara. (1999) Structure of high-temperature fluid selenium. Physical Review B 60:4, pages 2441-2448.
Crossref
Kozo Hoshino, Fuyuki Shimojo & Taiji Nishida. (1999) The Photo-Induced Structural Change in a Se Chain and a Se 8 Ring: an a b i n i t i o Molecular-Dynamics Simulation . Journal of the Physical Society of Japan 68:6, pages 1907-1911.
Crossref
Fuyuki Shimojo, Shuji Munejiri, Kozo Hoshino & Y Zempo. (1999) The microscopic mechanism of the semiconductor-metal transition in liquid arsenic triselenide. Journal of Physics: Condensed Matter 11:15, pages L153-L158.
Crossref
G. Kresse, F. Kirchhoff & M. J. Gillan. (1999) Defects in liquid selenium. Physical Review B 59:5, pages 3501-3513.
Crossref
Yoshifumi Sakaguchi & Kozaburo Tamura. (1999) Transient direct-current conductivity of liquid selenium: an indication of the photoinduced semiconductor-metal transition. Journal of Physics: Condensed Matter 11:3, pages 659-670.
Crossref
K. Tamura & M. Inui. (2013) In Situ X-Ray Diffraction and XAFS Studies of Expanded Fluid Selenium Using Synchrotron Radiation . MRS Bulletin 24:1, pages 26-31.
Crossref
Kozo Hoshino & Fuyuki Shimojo. (1998) The semiconductor-metal transition in fluid selenium studied by first-principles molecular-dynamics simulation. Journal of Physics: Condensed Matter 10:49, pages 11429-11438.
Crossref
Hiroaki Ohtani, Toshio Yamaguchi & Fumiko Yonezawa. (1998) Structural and Electronic Properties of Expanded Selenium in the Liquid-Vapor Supercritical Region. Journal of the Physical Society of Japan 67:8, pages 2807-2814.
Crossref
Yoshifumi Sakaguchi & Kozaburo Tamura. (1998) Transient absorption spectra of liquid selenium: a possibility of photoinduced semiconductor-metal transition. Journal of Physics: Condensed Matter 10:10, pages 2209-2220.
Crossref
Fuyuki Shimojo, Kozo Hoshino, Mitsuo Watabe & Y Zempo. (1998) The semiconductor-metal transition in fluid selenium: an ab initio molecular-dynamics simulation . Journal of Physics: Condensed Matter 10:6, pages 1199-1210.
Crossref
E. Keller & E. U. Franck. (2010) Electric conductivity of supercritical cesium‐cesium hydride mixtures at high temperatures and pressures. Berichte der Bunsengesellschaft für physikalische Chemie 101:5, pages 821-830.
Crossref
Shinya Hosokawa, Takeshi Kuboi & Kozaburo Tamura. (2010) Density Measurements for Expanded Fluid Selenium up to the Liquid‐vapour Supercritical Region by the X‐Ray Absorption Method. Berichte der Bunsengesellschaft für physikalische Chemie 101:1, pages 120-127.
Crossref
W Ebeling, A Förster, H Hess & M Yu Romanovsky. (1996) Thermodynamic and kinetic properties of hot nonideal plasmas. Plasma Physics and Controlled Fusion 38:12A, pages A31-A47.
Crossref
K. Tamura. (1996) Structural changes and the metal-non-metal transition insupercritical fluids. Journal of Non-Crystalline Solids 205-207, pages 239-246.
Crossref
A. W. Szafranski, E. Keller & E. U. Franck. (2014) Thermodynamics of liquid cesium‐cesium hydride mixtures at high pressures and temperatures. Berichte der Bunsengesellschaft für physikalische Chemie 96:8, pages 955-962.
Crossref
Kozaburo Tamura & Shinya Hosokawa. (2010) X‐Ray Diffraction Measurements for Expanded Fluid Selenium up to the Supercritical Region. Berichte der Bunsengesellschaft für physikalische Chemie 96:5, pages 681-688.
Crossref
W. J. Nellis, H. B. Radousky, D. C. Hamilton, A. C. Mitchell, N. C. Holmes, K. B. Christianson & M. van Thiel. (1991) Equation-of-state, shock-temperature, and electrical-conductivity data of dense fluid nitrogen in the region of the dissociative phase transition. The Journal of Chemical Physics 94:3, pages 2244-2257.
Crossref
D. C. Hamilton, W. J. Nellis, A. C. Mitchell, F. H. Ree & M. van Thiel. (1988) Electrical conductivity and equation of state of shock-compressed liquid oxygen. The Journal of Chemical Physics 88:8, pages 5042-5050.
Crossref
E. Keller & E.U. Franck. (1988) Transition from Metallic to Ionic Behaviour in Liquid Cs-CsH Mixtures at High Pressures and Temperatures*. Zeitschrift für Physikalische Chemie 156:1, pages 195-201.
Crossref
H.‐P. Seyer, K. Tamura, H. Hoshino, H. Endo & F. Hensel. (2010) The Optical Properties of Liquid Se and Se 1‐ x Te x Alloys . Berichte der Bunsengesellschaft für physikalische Chemie 90:7, pages 587-592.
Crossref
E.U. Franck. (1986) Dense fluids—New aspects and results. Physica B+C 139-140, pages 21-30.
Crossref
R. Fischer, R. W. Schmutzler & F. Hensel. (2010) pVT Data for Fluid Sulphur up to 1200°C and 1000 bar . Berichte der Bunsengesellschaft für physikalische Chemie 86:6, pages 546-549.
Crossref
M. Edeling & W. Freyland. (2010) Molecular Structure of Expanded Liquid Selenium up to 1400 °C. Berichte der Bunsengesellschaft für physikalische Chemie 85:11, pages 1049-1054.
Crossref
Hideoki Hoshino & Hirohisa Endo. (1981) Electrical Properties of Expanded Liquid Se and Its Dilute Mixtures Containing Te and S. Journal of the Physical Society of Japan 50:7, pages 2329-2334.
Crossref
William W. Warren & R. Dupree. (1980) Structural and electronic transformations of liquid selenium at high temperature and pressure: A NMR study . Physical Review B 22:5, pages 2257-2275.
Crossref
Friedrich Hensel. (2003) Liquid Metals and Liquid Semiconductors. Angewandte Chemie International Edition in English 19:8, pages 593-606.
Crossref
Friedrich Hensel. (1980) Flüssige Metalle und flüssige Halbleiter. Angewandte Chemie 92:8, pages 598-611.
Crossref
W. Freyland, F. Hensel & W. Gläser. (2010) High Temperature — High Pressure Apparatus for Neutron Diffraction on Fluids: Structure Factor of Expanded Fluid Rubidium. Berichte der Bunsengesellschaft für physikalische Chemie 83:9, pages 884-889.
Crossref
Kazuhiko Tsuji, Makoto Yao & Hirohisa Endo. (1978) Electrical Conductivity of Liquid Te and Its Dilute Alloys Containing Co, Cr, Au and Ag at High Temperatures and Pressures. Journal of the Physical Society of Japan 45:2, pages 495-500.
Crossref
V.A. Alekseev, V.G. Ovcharenko, Ju.F. Ryzhkov & M.V. Sadovsky. (1978) Possibility of Anderson transition in liquid Se and As in the region of high temperatures and pressures. Physics Letters A 65:2, pages 173-174.
Crossref
F. Hensel. 1978. High Pressure Chemistry. High Pressure Chemistry 259 279 .
. 1977. Liquid Semiconductors. Liquid Semiconductors 213 219 .
F. Hensel. (2010) Metal Nonmetal Transitions in Fluid Systems. Berichte der Bunsengesellschaft für physikalische Chemie 80:8, pages 786-792.
Crossref

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