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The Journal of Physical Chemistry. B|March 3, 2020
Molecular Orientation for Vapor-Deposited Organic Glasses Follows Rate-Temperature Superposition: The Case of PosaconazoleCamille Bishop, Yuhui Li, Michael F Toney, et al.
Physical Review Letters|February 7, 2003
Self-diffusion of tris-naphthylbenzene near the glass transition temperatureStephen F Swallen, Paul A Bonvallet, Robert J McMahon, et al.
The Journal of Physical Chemistry Letters|July 6, 2017
Influence of Molecular Shape on the Thermal Stability and Molecular Orientation of Vapor-Deposited Organic SemiconductorsDiane M Walters, Lucas Antony, Juan J de Pablo, et al.
Physical Review Letters|August 9, 2014
Role of fragility in the formation of highly stable organic glassesA SepĂșlveda, M Tylinski, A Guiseppi-Elie, et al.
The Journal of Chemical Physics|February 10, 2015
How much time is needed to form a kinetically stable glass? AC calorimetric study of vapor-deposited glasses of ethylcyclohexaneY Z Chua, M Ahrenberg, M Tylinski, et al.
The Journal of Chemical Physics|February 14, 2006
Isothermal desorption measurements of self-diffusion in supercooled o-terphenylMarie K Mapes, Stephen F Swallen, Kenneth L Kearns, et al.
The Journal of Chemical Physics|November 23, 2017
Modifying hydrogen-bonded structures by physical vapor deposition: 4-methyl-3-heptanolA R Young-Gonzales, A Guiseppi-Elie, M D Ediger, et al.
Nature Communications|October 21, 2016
Age and structure of a model vapour-deposited glassDaniel R Reid, Ivan Lyubimov, M D Ediger, et al.
The Journal of Chemical Physics|September 3, 2015
Kinetic stability and heat capacity of vapor-deposited glasses of o-terphenylKatherine R Whitaker, M Tylinski, Mathias Ahrenberg, et al.
Journal of the American Chemical Society|August 13, 2016
Photostability Can Be Significantly Modulated by Molecular Packing in GlassesYue Qiu, Lucas W Antony, Juan J de Pablo, et al.
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