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Yu, L., et al. What do polymorphs teach us about nucleation and crystal growth?" 235th National Meeting of the American Chemical Society. Vol. 235. Abstr. Pap. Am. Chem. Soc., 235. New Orleans, LA: American Chemical Society, 2008. 1.
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Moog, R. S., et al. "VISCOSITY DEPENDENCE OF THE ROTATIONAL REORIENTATION OF RHODAMINE-B IN MONO-ALCOHOL AND POLY-ALCOHOL - PICOSECOND TRANSIENT GRATING EXPERIMENTS." J. Phys. Chem.. 86 (1982): 4694-4700.
Adolf, D. B., et al. "VISCOSITY DEPENDENCE OF THE LOCAL SEGMENTAL DYNAMICS OF ANTHRACENE-LABELED POLYISOPRENE IN DILUTE-SOLUTION." Macromolecules. 25 (1992): 867-872.
Waldow, D. A., et al. "VISCOSITY DEPENDENCE OF THE LOCAL SEGMENTAL DYNAMICS OF ANTHRACENE-LABELED POLYSTYRENE IN DILUTE-SOLUTION." Macromolecules. 24 (1991): 3147-3153.
Zhu, W., and M. D. Ediger. "Viscosity dependence of polystyrene local dynamics in dilute solution." Macromolecules. 30 (1997): 1205-1210.
Whitaker, Katherine R., et al. "Vapor-deposited α,α,β-tris-naphthylbenzene glasses with low heat capacity and high kinetic stability." Journal of Chemical Physics. 137.15 (2012).
Qiu, Yue, S. S. Dalal, and M. D. Ediger. "Vapor-deposited organic glasses exhibit enhanced stability against photodegradation." Soft Matter. 14 (2018).
Gujral, Ankit, et al. "Vapor-Deposited Glasses with Long-Range Columnar Liquid Crystalline Order." Chemistry of Materials. 29 (2017).
Ediger, M. D.. "Vapor-deposited glasses provide clearer view of two-level systems." PNAS. 111.31 (2014).
Tylinski, M., et al. "Vapor-deposited glasses of methyl-m-toluate: How uniform is stable glass transformation?" Journal of Chemical Physics. 143 (2015): 10.
Bishop, C.. "Vapor-Deposited Glass Structure Determined by Deposition Rate–Substrate Temperature Superposition Principle." Journal of Physical Chemistry Letters. 10 (2019).
Beasley, M.S.. "Vapor-Deposited Ethylbenzene Glasses Approach “Ideal Glass” Density." Journal of Physical Chemistry Letters. 10 (2019).
Tylinski, M., et al. "Vapor-deposited alcohol glasses reveal a wide range of kinetic stability." Journal of Chemical Physics. 145 (2016).
Bishop, Camille, et al. "Vapor deposition rate modifies anisotropic glassy structure of an anthracene-based organic semiconductor." The Journal of Chemical Physics. 156 (2022).
Gómez-Zayas, Jaritza, et al. "Vapor deposition of a smectic liquid crystal: highly anisotropic, homogeneous glasses with tunable molecular orientation." Soft Matter. 12 (2016): 2942-2947.
Bishop, Camille, et al. "Vapor deposition of a nonmesogen prepares highly structured organic glasses." Proceedings of the National Academy of Sciences of the United States of America (2019).

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