In situ determination of crystal structure for high pressure phase of ZrO2 using a diamond anvil and single crystal X-ray diffraction method

Yasuhiro Kudoh1, Hiroshi Takeda1, H. Arashi2
1Mineralogical Institute, Faculty of Science, University of Tokyo, Tokyo, Japan
2Research Institute for Scientific Measurements, Tohoku University, Sendai, Japan.

Tóm tắt

Từ khóa


Tài liệu tham khảo

Arashi H, Ishigame M (1982) Raman spectroscpic studies of polymorphism in ZrO2 at high pressures. Phys Status Solidi (a) 71:313?321

Arashi H, Suzuki T, Akimoto S (1982) Phase transitions of ZrO2 at high pressures (II). The 23rd High Pressure Conference of Japan, Abstr 54?55

Arashi H, Yagi T, Shimomura O, Akimoto S (to be presented)

Barnett JD, Block S, Piermarini GJ (1973) An optical fluorescence system for quantitative pressure measurement in diamond-anvil cell. Rev Sci Instr 44:1?9

Block S, Jornada AH da, Piermarini GJ (1985) Pressure-temperature phase diagram of zirconia. J Am Ceram Soc 68:497?499

Coppens P, Hamilton WC (1970) Anisotropic extinction corrections in the Zachariasen approximation. Acta Crystallogr A26:71?83

Crommer DT, Waber JT (1965) Scattering factors computed from relativistic Dirac-Slater wave functions. Acta Crystallogr 18:104?109

Denner W, D'Amour H, Shulz H, Stoeger W (1978) A new measuring procedure for data collection with a high-pressure cell on an X-ray four-circle diffractometer. J Appl Crystallogr 11:260?264

Finger LW, King H (1978) A revised method of operation of the single-crystal diamond cell and refinement of the structure of NaCl at 32 kbar. Am Mineral 63:334?342

Fujishiro I, Piermarini GJ, Block S, Munro RG (1982) Viscosities and glass transition pressures in the methanol-ethanol-water system. High Pressure Res Ind AIRAPT Conf., 8th, 608?611

Gupta TK, Lange FF, Bechtold JH (1978) Effect of stress-induced phase transformation on the properties of polycrystalline zirconia containing metastable tetragonal phase. J Mater Sci 13:1464?1470

Keramidas VG, White WB (1974) Raman scattering study of the crystallization and phase transformations of ZrO2. J Am Ceram Soc 57:22?24

Kudoh Y (1984) Cylinder type miniature diamond anvil single-crystal pressure cell and its application to the study of the effect of pressure on the crystal structure of fayalite, Fe2SiO4. The 25th High Pressure Conference of Japan, Abstr 102?103

Kulcinski GL (1968) High-pressure induced phase transition in ZrO2. J Am Ceram Soc 51:582?584

Levin NT, McMurdie HF (1975) Phase diagrams for ceramists 1975 supplement. American Ceramic Society, Columbus, Ohio

Lityagina LM, Kabalkina SS, Pashkina TA, Khozyainov AI (1978) Polymorphism of ZrO2 at high pressures. Soviet Phys Solid State 20:2009?2010

Liu LG (1979) High-pressure phase transformations in baddeleyite and zircon, with geophysical implications. Earth Planet Sci Lett 44:390?396

Liu LG (1980) New high pressure phases of ZrO2 and HfO2. J Phys Chem Solids 41:331?334

McCullough JD, Trueblood KN (1959) The crystal structure of baddeleyite (monoclinic ZrO2). Acta Crystallogr 12:507?511

Smith DK, Newkirk HW (1965) The crystal structure of baddeleyite (monoclinic ZrO2) and its relation to the polymorphism of ZrO2. Acta Crystallogr 18:983?991

Syono Y, Akimoto S (1968) High pressure synthesis of fluorite-type PbO2. Mat Res Bull 3:153?158

Whitney ED (1965) Electrical resistivity and diffusionless phase transformations of zirconia at high temperatures and ultrahigh pressures. J Electrochem Soc 112:91?94