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Characterization of Nanocrystal Size Distribution using Raman Spectroscopy with a Multi-particle Phonon Confinement Model
Published on: August 22, 2015
Structural and vibrational characterization of Si3N4nanopowders under electron beam irradiation
M Yu Tashmetov1, Maksudjon Buriev1
1Institute of Nuclear Physics of the Academy of Sciences of Uzbekistan, Ulugbek District, Tashkent 100214, Uzbekistan.
Abstract:
The structural and vibrational properties of Si3N4nanopowders were investigated before and after electron irradiation at fluences of 1 × 1015, 5 × 1015, and 1 × 1016e cm-2. X-ray diffraction analysis revealed that the material retains its biphasic nature (α- andβ-Si3N4) after irradiation, although changes in phase fractions and lattice parameters were observed. Fourier-transform infrared spectroscopy (400-1300 cm-1) showed shifts in peak positions and variations in intensities, indicating bond rearrangements and modifications in the local Si-N and Si-O environment. Raman spectroscopy further confirmed irradiation-induced structural changes through systematic peak shifts and spectral modifications. The results demonstrate that electron irradiation significantly affects the local structure and defect formation in Si3N4nanopowders while preserving the overall crystalline phases.
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