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Cited article:

The ν3 − ν4 difference band contribution to the CCl4 symmetric stretch (ν1) mode

James D. Gaynor, Anna M. Wetterer, Edward J. Valente and Steven G. Mayer
Journal of Raman Spectroscopy 46 (1) 189 (2015)
https://doi.org/10.1002/jrs.4625

Linear variations of the thermodynamic quantities in the liquid phase of carbon tetrachloride close to the melting point

H. Yurtseven and D. Kavruk
Journal of Molecular Liquids 139 (1-3) 117 (2008)
https://doi.org/10.1016/j.molliq.2007.11.010

Pippard Relations for the Solid Phase of Carbon Tetrachloride Close to the Melting Point

D. Kaya Kavruk and H. Yurtseven
High Temperature Materials and Processes 26 (5-6) (2007)
https://doi.org/10.1515/HTMP.2007.26.5-6.397

Polymorphism of methylchloromethane compounds. IX: A low-temperature X-ray diffraction study of the orientationally disordered phases of t-butyl bromide and their relationship to the methylchloromethane compounds

R. Rudman
Journal of Molecular Structure 569 (1-3) 157 (2001)
https://doi.org/10.1016/S0022-2860(01)00465-3

Thermodynamic Consideration on a Series of Compounds (CH3)nCCl4-n:  Correlation between Molecular Sphericity, Configurational Order/Disorder, and Molecular Packing in Plastically Crystalline and Liquid Phases

Kazuhisa Kobashi and Masaharu Oguni
The Journal of Physical Chemistry B 103 (36) 7687 (1999)
https://doi.org/10.1021/jp990578z

Fullerene C60, 2CCl4 solvate. A solid-state study

René Céolin, Viatcheslav Agafonov, Daniel André, Ary Dworkin, Henri Szwarc, Jerôme Dugué, Bieneta Keita, Louis Nadjo, Claude Fabre and André Rassat
Chemical Physics Letters 208 (3-4) 259 (1993)
https://doi.org/10.1016/0009-2614(93)89072-P

Elastic constants of the metastable orientationally disordered phase Ia of CCl4 by Brillouin spectroscopy

J. Zuk, H. Kiefte and M. J. Clouter
The Journal of Chemical Physics 92 (2) 917 (1990)
https://doi.org/10.1063/1.458073

Molecular Motion in GeCl4as Studied by35Cl Nuclear Quadrupole Resonance

Hirokazu Nakayama, Nobuo Nakamura and Hideaki Chihara
Bulletin of the Chemical Society of Japan 59 (4) 1171 (1986)
https://doi.org/10.1246/bcsj.59.1171

Electron diffraction studies of supersonic jets. VII. Liquid and plastic crystalline carbon tetrachloride

Edward J. Valente and Lawrence S. Bartell
The Journal of Chemical Physics 80 (4) 1458 (1984)
https://doi.org/10.1063/1.446893

The dual melting curves and metastability of carbon tetrachloride

Vern E. Bean and Sharrill D. Wood
The Journal of Chemical Physics 72 (11) 5838 (1980)
https://doi.org/10.1063/1.439107

Molecular and Chemical Physics, Chemistry, Biological Effects, Geo and Planetary Sciences, New Resources, Dynamic Pressures, High Pressure Safety

V.E. Bean
Molecular and Chemical Physics, Chemistry, Biological Effects, Geo and Planetary Sciences, New Resources, Dynamic Pressures, High Pressure Safety 638 (1980)
https://doi.org/10.1016/B978-0-08-024774-8.50148-1

Thermodynamic and Structural Studies of Polymorphism in 1,1,1-trichloroethane and 2,2-dichloropropane

J. A. Morrison, E. L. Richards and M. Sakon
Molecular Crystals and Liquid Crystals 43 (1-2) 59 (1977)
https://doi.org/10.1080/00268947708084935

Polymorphism of the crystalline methylchloromethane compounds. V. The mechanism of the solid–solid phase transition in methylchloroform and the nature of the relation between the ordered forms of carbon tetrachloride and methylchloroform

Reuben Rudman
The Journal of Chemical Physics 66 (7) 3139 (1977)
https://doi.org/10.1063/1.434335

Light scattering in carbon tetrachloride: Liquid and plastic crystal phases

M. Djabourov, C. Lévy-Mannheim, J. Leblond and P. Papon
The Journal of Chemical Physics 66 (12) 5748 (1977)
https://doi.org/10.1063/1.433850