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Structural rearrangements of the first stage inclusion compound of fluorinated graphite with acetonitrile during isothermal deintercalation
Ist Teil von
Journal of thermal analysis and calorimetry, 2017-04, Vol.128 (1), p.349-355
Ort / Verlag
Dordrecht: Springer Netherlands
Erscheinungsjahr
2017
Quelle
SpringerLink
Beschreibungen/Notizen
The deintercalation process for the first stage fluorinated graphite inclusion compound C
2
F
0.92
Br
0.01
·0.285CH
3
CN was studied under isothermal conditions. It was shown by a combination of gravimetric and X ray diffraction methods that the decomposition of the first stage inclusion compound into the second stage compound (and gaseous CH
3
CN) under isothermal conditions proceeds through the mixed-layer state that simultaneously consists of three main microphases: the first, the second and the fourth stages of filling with their identity periods 9.42, 15.50 and 27.8 Å, respectively, and of the second stage of filling in its labile extended state with the identity period of about 16.3 Å. It follows from structural properties that the C–C bonds of “guest” molecules are mostly coplanar with the fluorocarbon layers of the “host” matrix.