Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1522524 | Materials Chemistry and Physics | 2013 | 6 Pages |
Abstract
We use the density-functional theory to make models of SixSy and SixSey for the values of x,y = 1-6. The vibrational frequencies are calculated for each model. The stable clusters are selected on the basis of positive vibrational frequencies. In the case of SixS1âx, the values of the vibrational frequencies calculated from the first principles for Si2S(triangular)cluster of atoms, 364.1 cmâ1 and 380.8 cmâ1, agree with the experimentally measured values of 367 cmâ1 and 381 cmâ1, indicating that Si2S clusters occur in the glassy state of SiS. The calculated values of the vibrational frequencies of SiSe4 (pyramidal) which agree with the experimental Raman frequencies of glassy SixSe1âx are 114, 166 and 361 cmâ1. The calculated values for Si2Se4 (bipyramidal) which agree with the experimental data of SixSe1âx are 166 and 464 cmâ1. In Si4Se (pyramidal) the values 246 and 304 cmâ1 agree with the measured values. In Si4Se2 (bipyramidal), the calculated values 162, 196 and 304 cmâ1 agree with the measured values. The calculated values of 473 cmâ1 for Si6Se2 (bipyramidal) also agree with the experimentally measured values. We thus find that pyramidal structures are present in the amorphous SixSe1âx glassy state.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
V. Radhika Devi, Noriza Ahmad Zabidi, Keshav N. Shrivastava,