Simon A. Rogers
Affiliations: | Chemical engineering | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
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Publications
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Jeon S, Kamble Y, Xu Z, et al. (2025) Large modulation of the bottlebrush diblock copolymer morphology and structural color through solvent selectivity. Soft Matter |
Lee JC, Hong YT, Weigandt KM, et al. (2024) Strain shifts under stress-controlled oscillatory shearing in theoretical, experimental, and structural perspectives: Application to probing zero-shear viscosity. Journal of Rheology. 63 |
Divoux T, Agoritsas E, Aime S, et al. (2024) Ductile-to-brittle transition and yielding in soft amorphous materials: perspectives and open questions. Soft Matter |
Kamani KM, Rogers SA. (2024) Brittle and ductile yielding in soft materials. Proceedings of the National Academy of Sciences of the United States of America. 121: e2401409121 |
Mahmoudabadbozchelou M, Kamani KM, Rogers SA, et al. (2024) Unbiased construction of constitutive relations for soft materials from experiments via rheology-informed neural networks. Proceedings of the National Academy of Sciences of the United States of America. 121: e2313658121 |
Cho NH, Shi J, Murphy RP, et al. (2023) Extracting microscopic insight from transient dielectric measurements during large amplitude oscillatory shear. Soft Matter |
Donley GJ, Narayanan S, Wade MA, et al. (2023) Investigation of the yielding transition in concentrated colloidal systems via rheo-XPCS. Proceedings of the National Academy of Sciences of the United States of America. 120: e2215517120 |
Donley GJ, Singh PK, Shetty A, et al. (2020) Elucidating the G″ overshoot in soft materials with a yield transition via a time-resolved experimental strain decomposition. Proceedings of the National Academy of Sciences of the United States of America |
Lee JC, Weigandt KM, Kelley EG, et al. (2019) Structure-Property Relationships via Recovery Rheology in Viscoelastic Materials. Physical Review Letters. 122: 248003 |
Lee JC, Porcar L, Rogers SA. (2019) Unveiling Temporal Nonlinear Structure-Rheology Relationships under Dynamic Shearing. Polymers. 11 |