Variable-temperature X-ray diffraction studies of C70 suggest the occurrence of two phase transitions around 350 and 280 K where the high-temperature phase is fcc and the low-temperature phase is monoclinic, best described as a distorted hcp structure with a doubled unit cell; two like-phases (possibly hcp) seem to coexist in the 280-350 K range. Application of pressure gives rise to three distinct transitions associated with characteristic pressure coefficients, the extrapolated values of the transition temperatures at ambient pressure being around 340, 325 and 270 K. Pressure delineates closely related phases Of C70 just as in the case Of C60 which exhibits two orientational phase transitions at high pressures
Pressure-dependent infrared transmittance measurements on C60–C8H8 and C70–C8H8 were performed at r...
Powder X-ray diffraction shows that on sublimation, solvent free C 70 crystallizes in a hexagonal cl...
Infrared spectroscopic studies of C70 films show variation in absorbance and linewidth of the bands ...
Variable-temperature X-ray diffraction studies of C70 suggest the occurrence of two phase transition...
Variable-temperature X-ray diffraction studies of C70 suggest the occurrence of two phase transi...
The structure of the low-temperature phase of hexagonal close-packed (hcp) grown C70 is determined f...
Single crystal of pure C70 are grown from the vapour phase and the structure and morphology of these...
Single crystals of pure C70 are grown from the vapour phase and the structure and morphology of thes...
The structure of the low-temperature phase of hexagonal close-packed (hcp) grown C70 is determined f...
Cubic as well as hexagonal single crystals of C70 have been grown and investigated by electron diffr...
Cubic as well as hexagonal single crystals of C70 have been grown and investigated by electron diffr...
We follow the structural transformation in solid C70 from the high temperature hcp to a low temperat...
Results of X-ray diffraction study at 300K, 77K and 10K are presented for C70 powder prepared by bot...
Infrared spectroscopic studies of C70 films show variation in absorbance and linewidth of the bands ...
The room-temperature face-centered cubic (FCC-a0) phase as well as the low-temperature simple cubic ...
Pressure-dependent infrared transmittance measurements on C60–C8H8 and C70–C8H8 were performed at r...
Powder X-ray diffraction shows that on sublimation, solvent free C 70 crystallizes in a hexagonal cl...
Infrared spectroscopic studies of C70 films show variation in absorbance and linewidth of the bands ...
Variable-temperature X-ray diffraction studies of C70 suggest the occurrence of two phase transition...
Variable-temperature X-ray diffraction studies of C70 suggest the occurrence of two phase transi...
The structure of the low-temperature phase of hexagonal close-packed (hcp) grown C70 is determined f...
Single crystal of pure C70 are grown from the vapour phase and the structure and morphology of these...
Single crystals of pure C70 are grown from the vapour phase and the structure and morphology of thes...
The structure of the low-temperature phase of hexagonal close-packed (hcp) grown C70 is determined f...
Cubic as well as hexagonal single crystals of C70 have been grown and investigated by electron diffr...
Cubic as well as hexagonal single crystals of C70 have been grown and investigated by electron diffr...
We follow the structural transformation in solid C70 from the high temperature hcp to a low temperat...
Results of X-ray diffraction study at 300K, 77K and 10K are presented for C70 powder prepared by bot...
Infrared spectroscopic studies of C70 films show variation in absorbance and linewidth of the bands ...
The room-temperature face-centered cubic (FCC-a0) phase as well as the low-temperature simple cubic ...
Pressure-dependent infrared transmittance measurements on C60–C8H8 and C70–C8H8 were performed at r...
Powder X-ray diffraction shows that on sublimation, solvent free C 70 crystallizes in a hexagonal cl...
Infrared spectroscopic studies of C70 films show variation in absorbance and linewidth of the bands ...