Matthew Daly
Affiliations: | University of Illinois at Chicago, Chicago, IL, United States |
Area:
Materials ScienceGoogle:
"Matthew Daly"Cross-listing: Materials Tree
Parents
Sign in to add mentorGlenn D. Hibbard | grad student | University of Toronto | |
Chandra Veer Singh | grad student | University of Toronto |
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Publications
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Rasooli N, Chen W, Daly M. (2024) Deformation mechanisms in high entropy alloys: a minireview of short-range order effects. Nanoscale |
Daly M, Haldar S, Rajendran VK, et al. (2020) Size effects in strengthening of NiCo multilayers with modulated microstructures Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 771: 138581 |
Daly M, Kumar A, Singh CV, et al. (2020) On the competition between nucleation and thickening in deformation twinning of face-centered cubic metals International Journal of Plasticity. 130: 102702 |
Zhang X, Nguyen H, Daly M, et al. (2019) Nanoscale toughening of ultrathin graphene oxide-polymer composites: mechanochemical insights into hydrogen-bonding/van der Waals interactions, polymer chain alignment, and steric parameters. Nanoscale |
Chon MJ, Daly M, Wang B, et al. (2017) Lamellae spatial distribution modulates fracture behavior and toughness of african pangolin scales. Journal of the Mechanical Behavior of Biomedical Materials |
Gao A, Mukherjee S, Srivastava I, et al. (2017) Atomistic Origins of Ductility Enhancement in Metal Oxide Coated Silicon Nanowires for Li-Ion Battery Anodes Advanced Materials Interfaces. 4: 1700920 |
Daly M, Cao C, Sun H, et al. (2016) Interfacial Shear Strength of Multilayer Graphene Oxide Films. Acs Nano |
Sun H, Mukherjee S, Daly M, et al. (2016) New insights into the structure-nonlinear mechanical property relations for graphene allotropes Carbon. 110: 443-457 |
Cao C, Daly M, Chen B, et al. (2015) Strengthening in graphene oxide nanosheets: Bridging the gap between interplanar and intraplanar fracture. Nano Letters |
Daly M, McCrea JL, Bouwhuis BA, et al. (2015) Deformation behavior of a NiCo multilayer with a modulated grain size distribution Materials Science and Engineering A. 641: 305-314 |