Our publications
Comparison of mechanical and molecular measures of mobility during constant strain rate deformation of a PMMA glass." Journal of Polymer Science, Part B: Polymer Physics. 54 (2016).
"Controlling Structure and Properties of Vapor-Deposited Glasses of Organic Semiconductors: Recent Advances and Challenges." Journal of Physical Chemistry Letters. 11.17 (2020): 6935-6945.
"Corrigendum: Ultrastable glasses from in silico vapour deposition." Nature Materials. 12 (2014).
"Dense Glass Packing Can Slow Reactions with an Atmospheric Gas." The Journal of Physical Chemistry B. 123.47 (2019).
"Dynamics near Free Surfaces and the Glass Transition in Thin Polymer Films: A View to the Future." Macromolecules. 47.2 (2014).
"Enhanced Segmental Dynamics of Poly(lactic acid) Glasses during Constant Strain Rate Deformation." Macromolecules. 52.17 (2019).
"Fast Crystal Growth from Organic Glasses: Comparison of o-Terphenyl with its Structural Analogs." Journal of Physical Chemistry B. 118.28 (2014).
"Generic packing motifs in vapor-deposited glasses of organic semiconductors." Soft Matter. 15.38 (2019).
"Glass transition and stable glass formation of tetrachloromethane." The Journal of Chemical Physics. 144 (2016).
"Glasses of three alkyl phosphates show a range of kinetic stabilities when prepared by physical vapor deposition." Journal of Chemical Physics. 148 (2018).
"Highly Organized Smectic-like Packing in Vapor-Deposited Glasses of a Liquid Crystal." Chemistry of Materials.29 (2017).
"How much time is needed to form a kinetically stable glass? AC calorimetric study of vapor-deposited glasses of ethylcyclohexane." Journal of Chemical Physics. 142 (2015).
"Influence of Substrate Temperature on the Transformation Front Velocities That Determine Thermal Stability of Vapor-Deposited Glasses." Journal of Physical Chemistry B. 19.9 (2015).
"Kinetic stability and heat capacity of vapor-deposited glasses of o-terphenyl." Journal of Chemical Physics. 143 (2015).
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Measurement of Segmental Mobility during Constant Strain Rate Deformation of a Poly(methyl methacrylate) Glass." Macromolecules. 47.2 (2014).
"Molecular modeling of vapor-deposited polymer glasses." Journal of Chemical Physics. 140.20 (2014).
"Molecular Orientation for Vapor-Deposited Organic Glasses Follows Rate-Temperature Superposition: The Case of Posaconazole." Journal of Physical Chemistry B. 124.12 (2020): 2505-2513.
"Orientational anisotropy in simulated vapor-deposited molecular glasses." Journal of Chemical Physics. 143 (2015).
"Over What Length Scale Does an Inorganic Substrate Perturb the Structure of a Glassy Organic Semiconductor." ACS Applied Materials and Interfaces. 12.23 (2020): 26717-26726.
"Photopatterning of Indomethacin Thin Films: a Solvent-Free Vapor-Deposited Photoresist." ACS Applied Materials and Interfaces. 7.42 (2015): 3.
"Rejuvination Versus Overaging: The Effect of Cyclic Loading/Unloading on the Segmental Dynamics of Poly(methyl methacrylate) Glasses." Macromolecules. 53.19 (2020): 8467-8475.
"Relationship between aged and vapor-deposited organic glasses: Secondary relaxations in methyl-m-toluate." The Journal of Chemical Physics. 151.14 (2019).
"Role of Fragility in the Formation of Highly Stable Organic Glasses." Physical Review Letters. 113 (2014).
"Stable Glasses of Organic Semiconductor Resist Crystallization." Journal of Physical Chemistry B. 125.1 (2021): 461-466.
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