Correlation of density periodicity to pressure-induced polymorphic transformations in solid elements
- 1 June 1973
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 44 (6) , 2470-2474
- https://doi.org/10.1063/1.1662599
Abstract
The densities of the elements have been found to be a periodic function of the atomic number in the same manner as the other properties of elements in the Periodic Table. The existence of pressure-induced polymorphic transformations in solid elements at room temperature is found to be closely correlated to the periodicity of density, hence, the atomic number. With only the exception of Fe, no phase transformations have been found for 28 solid elements having densities greater than ρ=2.8+0.12Z. For elements having densities less than the above value, there might be only two exceptions out of 50 solid elements that do undergo pressure-induced phase transformations within the range of presently available apparatus. This correlation seems to serve as a better indication for finding a high-pressure phase than is predicted on the basis of crystal structure, and has led the author to find a high-pressure phase in Se, Tm, and Lu.This publication has 45 references indexed in Scilit:
- Hexagonal Diamond—A New Form of CarbonThe Journal of Chemical Physics, 1967
- High-Pressure Transitions of Germanium and a New High-Pressure Form of GermaniumScience, 1965
- High Pressure Polymorphism in CesiumScience, 1964
- High Pressure: Effect on DysprosiumScience, 1964
- Allotropy in Some Rare-Earth Metals at High PressuresScience, 1964
- Beryllium: Effect of Ultra-High Pressure on ResistanceScience, 1963
- Effect of Temperature and Pressure on the Electrical Resistance of Four Alkaline Earth MetalsPhysical Review B, 1963
- The synthesis of diamondJournal of Chemical Education, 1961
- Rough Compressions of 177 Substances to 40,000 Kg/CmProceedings of the American Academy of Arts and Sciences, 1948
- The Compression of 46 Substances to 50,000 kg/cmProceedings of the American Academy of Arts and Sciences, 1940