Anomalous high-pressure behavior of amorphous selenium from synchrotron x-ray diffraction and microtomography.
basic_science · Level V
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- Record sourced from PubMed, PMID 18768800.
- Also identified by DOI 10.1073/pnas.0806857105 and PMC identifier 2533173.
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Abstract
The high-pressure behavior of amorphous selenium has been investigated with time-resolved diamond anvil cell synchrotron x-ray diffraction and computed microtomography techniques. A two-step dynamic crystallization process is observed in which the monoclinic phase crystallized from the amorphous selenium and gradually converted to the trigonal phase, thereby explaining previously observed anomalous changes in electrical conductivity of the material under pressure. The crystallization of this elemental system involves local topological fluctuations and results in an unusual pressure-induced volume expansion. The metastability of the phases involved in the transition accounts for this phenomenon. The results demonstrate the use of pressure to control and directly monitor the relative densities and energetics of phases to create new phases from highly metastable states. The microtomographic technique developed here represents a method for determination of the equations of state of amorphous materials at extreme pressures and temperatures.
Medical subject headings
- Atmospheric Pressure
- Selenium
- X-Ray Diffraction