2 Synchrotron-Radiation-Based Energy-Domain Mössbauer …
79
Fig. 2.13 a Phonon densities of states of SyrB2–Cl and SyrB2–Br. b DFT-predicted the phonon
densities of states. c DFT-predicted four normal modes of the five-coordinate Fe(IV) = O structure
[72]
on nanoparticles [80–85], thin films [86–92], quasicrystals [93], clathrates [94, 95],
superconductors [50, 96–98], filled skutterudites [99, 100], and glass [101, 102].
The nuclear resonant scattering method can be applied to not only solids but also
liquids. The element-specific diffusion constant of Fe ions in HCl solution [103] and
79
Fig. 2.13 a Phonon densities of states of SyrB2–Cl and SyrB2–Br. b DFT-predicted the phonon
densities of states. c DFT-predicted four normal modes of the five-coordinate Fe(IV) = O structure
[72]
on nanoparticles [80–85], thin films [86–92], quasicrystals [93], clathrates [94, 95],
superconductors [50, 96–98], filled skutterudites [99, 100], and glass [101, 102].
The nuclear resonant scattering method can be applied to not only solids but also
liquids. The element-specific diffusion constant of Fe ions in HCl solution [103] and
