by Vispa, A., Romanini, M., Ramos, M. A., Pardo, L. C., Bermejo, F. J., Hassaine, M., Krivchikov, A. I., Taylor, J. W. and Tamarit, J. Ll.
Abstract:
We present a dynamic and thermodynamic study of the orientational glass former Freon 113 (1,1,2-trichloro-1,2,2-trifluoroethane, CCl2F−CClF2) in order to analyze its kinetic and thermodynamic fragilities. Freon 113 displays internal molecular degrees of freedom that promote a complex energy landscape. Experimental specific heat and its microscopic origin, the vibrational density of states from inelastic neutron scattering, together with the orientational dynamics obtained by means of dielectric spectroscopy have revealed the highest fragility value, both thermodynamic and kinetic, found for this orientational glass former. The excess in both Debye-reduced specific heat and density of states (boson peak) evidences the existence of glassy low-energy excitations. We demonstrate that early proposed correlations between the boson peak and the Debye specific heat value are elusive as revealed by the clear counterexample of the studied case.
Reference:
Thermodynamic and Kinetic Fragility of Freon 113: The Most Fragile Plastic Crystal (Vispa, A., Romanini, M., Ramos, M. A., Pardo, L. C., Bermejo, F. J., Hassaine, M., Krivchikov, A. I., Taylor, J. W. and Tamarit, J. Ll.), In Physical Review Letters, volume 118, 2017.
Bibtex Entry:
@article{vispa_thermodynamic_2017,
	title = {Thermodynamic and {Kinetic} {Fragility} of {Freon} 113: {The} {Most} {Fragile} {Plastic} {Crystal}},
	volume = {118},
	shorttitle = {Thermodynamic and {Kinetic} {Fragility} of {Freon} 113},
	url = {https://link.aps.org/doi/10.1103/PhysRevLett.118.105701},
	doi = {10.1103/PhysRevLett.118.105701},
	abstract = {We present a dynamic and thermodynamic study of the orientational glass former Freon 113 (1,1,2-trichloro-1,2,2-trifluoroethane, CCl2F−CClF2) in order to analyze its kinetic and thermodynamic fragilities. Freon 113 displays internal molecular degrees of freedom that promote a complex energy landscape. Experimental specific heat and its microscopic origin, the vibrational density of states from inelastic neutron scattering, together with the orientational dynamics obtained by means of dielectric spectroscopy have revealed the highest fragility value, both thermodynamic and kinetic, found for this orientational glass former. The excess in both Debye-reduced specific heat and density of states (boson peak) evidences the existence of glassy low-energy excitations. We demonstrate that early proposed correlations between the boson peak and the Debye specific heat value are elusive as revealed by the clear counterexample of the studied case.},
	number = {10},
	urldate = {2021-07-13},
	journal = {Physical Review Letters},
	author = {Vispa, A. and Romanini, M. and Ramos, M. A. and Pardo, L. C. and Bermejo, F. J. and Hassaine, M. and Krivchikov, A. I. and Taylor, J. W. and Tamarit, J. Ll.},
	month = mar,
	year = {2017},
	note = {No CMAM},
	pages = {105701},
	file = {APS Snapshot:E:\Usuarios\Administrator\Zotero\storage\MANRB73J\PhysRevLett.118.html:text/html;Full Text PDF:E:\Usuarios\Administrator\Zotero\storage\6VINYBTJ\Vispa et al. - 2017 - Thermodynamic and Kinetic Fragility of Freon 113 .pdf:application/pdf},
}

by Vispa, A., Romanini, M., Ramos, M. A., Pardo, L. C., Bermejo, F. J., Hassaine, M., Krivchikov, A. I., Taylor, J. W. and Tamarit, J. Ll.
Abstract:
We present a dynamic and thermodynamic study of the orientational glass former Freon 113 (1,1,2-trichloro-1,2,2-trifluoroethane, CCl2F−CClF2) in order to analyze its kinetic and thermodynamic fragilities. Freon 113 displays internal molecular degrees of freedom that promote a complex energy landscape. Experimental specific heat and its microscopic origin, the vibrational density of states from inelastic neutron scattering, together with the orientational dynamics obtained by means of dielectric spectroscopy have revealed the highest fragility value, both thermodynamic and kinetic, found for this orientational glass former. The excess in both Debye-reduced specific heat and density of states (boson peak) evidences the existence of glassy low-energy excitations. We demonstrate that early proposed correlations between the boson peak and the Debye specific heat value are elusive as revealed by the clear counterexample of the studied case.
Reference:
Thermodynamic and Kinetic Fragility of Freon 113: The Most Fragile Plastic Crystal (Vispa, A., Romanini, M., Ramos, M. A., Pardo, L. C., Bermejo, F. J., Hassaine, M., Krivchikov, A. I., Taylor, J. W. and Tamarit, J. Ll.), In Physical Review Letters, volume 118, 2017.
Bibtex Entry:
@article{vispa_thermodynamic_2017,
	title = {Thermodynamic and {Kinetic} {Fragility} of {Freon} 113: {The} {Most} {Fragile} {Plastic} {Crystal}},
	volume = {118},
	shorttitle = {Thermodynamic and {Kinetic} {Fragility} of {Freon} 113},
	url = {https://link.aps.org/doi/10.1103/PhysRevLett.118.105701},
	doi = {10.1103/PhysRevLett.118.105701},
	abstract = {We present a dynamic and thermodynamic study of the orientational glass former Freon 113 (1,1,2-trichloro-1,2,2-trifluoroethane, CCl2F−CClF2) in order to analyze its kinetic and thermodynamic fragilities. Freon 113 displays internal molecular degrees of freedom that promote a complex energy landscape. Experimental specific heat and its microscopic origin, the vibrational density of states from inelastic neutron scattering, together with the orientational dynamics obtained by means of dielectric spectroscopy have revealed the highest fragility value, both thermodynamic and kinetic, found for this orientational glass former. The excess in both Debye-reduced specific heat and density of states (boson peak) evidences the existence of glassy low-energy excitations. We demonstrate that early proposed correlations between the boson peak and the Debye specific heat value are elusive as revealed by the clear counterexample of the studied case.},
	number = {10},
	urldate = {2021-07-13},
	journal = {Physical Review Letters},
	author = {Vispa, A. and Romanini, M. and Ramos, M. A. and Pardo, L. C. and Bermejo, F. J. and Hassaine, M. and Krivchikov, A. I. and Taylor, J. W. and Tamarit, J. Ll.},
	month = mar,
	year = {2017},
	note = {No CMAM},
	pages = {105701},
	file = {APS Snapshot:E:\Usuarios\Administrator\Zotero\storage\MANRB73J\PhysRevLett.118.html:text/html;Full Text PDF:E:\Usuarios\Administrator\Zotero\storage\6VINYBTJ\Vispa et al. - 2017 - Thermodynamic and Kinetic Fragility of Freon 113 .pdf:application/pdf},
}