
Publications of A. Zerr
All genres
Journal Article (13)
1.
Journal Article
90 (19), 191910 (2007)
Elastic moduli and hardness of c-Zr2.86(N0.88O0.12)4 having Th3P4-type structure. Applied Physics Letters 2.
Journal Article
46 (9), pp. 1476 - 1480 (2007)
High-pressure synthesis of crystalline carbon nitride imide, C2N2(NH). Angewandte Chemie-International Edition 3.
Journal Article
26 (1), pp. 23 - 32 (2006)
Decomposition of alkanes at high pressures and temperatures. High Pressure Research 4.
Journal Article
139 (6), pp. 255 - 258 (2006)
Equation of state of cubic hafnium(IV) nitride having Th3P4-type structure. Solid State Communications 5.
Journal Article
75 (1), pp. 23 - 25 (2002)
Equation of state and structural phase transition in FeBO3 at high pressure. JETP Letters 6.
Journal Article
111, pp. 4659 - 4662 (1999)
Synthesis of a cubic Ge3N4 phase at high pressures and temperatures. Journal of Chemical Physics 7.
Journal Article
285 (1999)
(Mg,Fe)SiO3-Perovskite stability and lower mantle conditions. Science 8.
Journal Article
398, pp. 604 - 607 (1999)
Partitioning of nickel and cobalt between silicate perovskite and metal at pressures up to 80 GPa. Nature 9.
Journal Article
400, pp. 340 - 342 (1999)
Synthesis of cubic silicon nitride. Nature 10.
Journal Article
280, pp. 2093 - 2095 (1998)
(MgFe)Si03-Perovskite stability under lower mantle conditions. Science 11.
Journal Article
7, pp. 359 - 361 (1998)
Phase Transitions and Disorderung of CaSiO3 upon Compression. Review of High Pressure Science and Technology 12.
Journal Article
25, pp. 193 - 196 (1998)
The transition of pyrope to perovskite. Physical Chemical Minerals 13.
Journal Article
281, pp. 243 - 246 (1998)
Solidus of Earth's deep mantle. Science Book Chapter (3)
14.
Book Chapter
A new cubic silicon nitride phase. In: Proceedings of the AIRAPT-17 "Science and Technology of High Pressure", pp. 914 - 917 (Eds. Manghnani, M. H.; Nellis, W. J.; Nicol, M. F.). Universities Press, Hyderabad (2000)
15.
Book Chapter
Phase transitions and material synthesis using the CO2-laser heating technique in a diamond cell. In: Handbook of Ceramic Hard Materials, pp. 41 - 65 (Ed. Riedel, R.). Wiley-VCH, Weinheim (2000)
16.
Book Chapter
CO2-Laser heating in a diamond cell to 80 GPa and 5000 K: phase transitions and synthesis under controlled conditions. In: Proceedings of the 5th NIRIM International Symposium on Advanced Materials, ISAM'98, Tsukuba, Japan, pp. 5 - 8. National Institute for Research in Inorganic Materials, Tsukuba (1998)