The vibrational densities of states in the lattice translation region below 130 cm-' (3 THz) for structure I xenon hydrate and structure II krypton hydrate have been determined from incoherent inelastic neutron scattering experiments. The main features in the lattice vibrations are found to shift to
Inelastic neutron-scattering study of the proton dynamics in carbons and coals
✍ Scribed by F. Fillaux; R. Papoular; A. Lautié; J. Tomkinson
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 634 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0008-6223
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✦ Synopsis
The INS spectra from 30 to 4000 cm-r of four coal samples at 20 K with various ranks (subbituminous A, low volatile bituminous, semi-anthracite, and anthracite) are reported. For each sample, rather broad bands superimposed on a continuum with constant intensity over the whole frequency range are observed. This continuum is assigned to recoiling free protons located between the graphite-like planes. The INS spectra of the coals are also compared to that of perylene (C,,H,,). The spectrum of the anthracite is dominated by the C:H and skeletal modes of polyaromatic entities. Samples of lower rank show bands due to alkylic and vinylic CH, and CH, groups. The integrated intensities of the INS spectra are not proportional to the numbers of protons given by the etemental analysis. This is due to different proportions of free and bound protons in the samples. A comparison of the INS intensities in the CH stretching region for coals and perylene gives an estimation of the concentration of bound protons which ranges from -40% to -80%.
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The hydrogen bond stretching and bending vibrations in solid trimethylammonium chloride are distinguished from the lattice vibrations by comparing the inelastic neutron scattering spectra of the fully hydrogenated salt (CH3)sNHfCt-with the partially deuterated derivatives (CHs)sND+Cl-and (CDs)sNH+Cl