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The Journal of Chemical Physics|January 3, 2013
Local variation of fragility and glass transition temperature of ultra-thin supported polymer filmsPaul Z Hanakata, Jack F Douglas, Francis W Starr
Physical Review Letters|March 4, 2022
Anomalous Thermal Expansion in Ising-like Puckered SheetsPaul Z Hanakata, Abigail Plummer, David R Nelson
Nature Communications|June 17, 2014
Interfacial mobility scale determines the scale of collective motion and relaxation rate in polymer filmsPaul Z Hanakata, Jack F Douglas, Francis W Starr
Physical Review. E|November 18, 2023
Geometric control of tilt transition dynamics in single-clamped thermalized elastic sheetsRoberto Abril Valenzuela, Paul Z Hanakata, Mark J Bowick
Nanoscale|December 3, 2015
Highly stretchable MoS2 kirigamiPaul Z Hanakata, Zenan Qi, David K Campbell, et al.
Physical Review Letters|January 5, 2019
Accelerated Search and Design of Stretchable Graphene Kirigami Using Machine LearningPaul Z Hanakata, Ekin D Cubuk, David K Campbell, et al.
The Journal of Chemical Physics|June 22, 2015
A unifying framework to quantify the effects of substrate interactions, stiffness, and roughness on the dynamics of thin supported polymer filmsPaul Z Hanakata, Beatriz A Pazmiño Betancourt, Jack F Douglas, et al.
Physical Review Letters|September 7, 2019
Erratum: Accelerated Search and Design of Stretchable Graphene Kirigami Using Machine Learning [Phys. Rev. Lett. 121, 255304 (2018)]Paul Z Hanakata, Ekin D Cubuk, David K Campbell, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 26, 2015
Quantitative relations between cooperative motion, emergent elasticity, and free volume in model glass-forming polymer materialsBeatriz A Pazmiño Betancourt, Paul Z Hanakata, Francis W Starr, et al.
Soft Matter|October 4, 2017
Kirigami actuatorsMarcelo A Dias, Michael P McCarron, Daniel Rayneau-Kirkhope, et al.
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