Dahlia N. Amato

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2014-2018 Polymer Science & Engineering The University of Southern Mississippi, Hattiesburg, MS, United States 
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"Dahlia Amato"
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Amato DN, Amato DV, Sandoz M, et al. (2020) Programmable Porous Polymers via Direct Bubble Writing with Surfactant-Free Inks. Acs Applied Materials & Interfaces
Adewunmi Y, Namjilsuren S, Walker WD, et al. (2019) The antimicrobial activity and cellular pathways targeted by -anisaldehyde and epigallocatechin gallate in the opportunistic human pathogen . Applied and Environmental Microbiology
Visser CW, Amato DN, Mueller J, et al. (2019) Architected Polymer Foams via Direct Bubble Writing. Advanced Materials (Deerfield Beach, Fla.). e1904668
Visser CW, Amato DN, Mueller J, et al. (2019) Polymer Foams: Architected Polymer Foams via Direct Bubble Writing (Adv. Mater. 46/2019) Advanced Materials. 31: 1970326
Amato DN, Amato DV, Adewunmi Y, et al. (2018) Using Aldehyde Synergism To Direct the Design of Degradable Pro-Antimicrobial Networks. Acs Applied Bio Materials. 1: 1983-1991
Amato DN, Amato DV, Adewunmi Y, et al. (2018) Using Aldehyde Synergism To Direct the Design of Degradable Pro-Antimicrobial Networks Acs Applied Bio Materials. 1: 1983-1991
Amato DN, Amato DV, Mavrodi OV, et al. (2017) Pro-Antimicrobial Networks via Degradable Acetals (PANDAs) Using Thiol-Ene Photopolymerization. Acs Macro Letters. 6: 171-175
Amato DV, Amato DN, Blancett L, et al. (2017) A bio-based pro-antimicrobial polymer network via degradable acetal linkages. Acta Biomaterialia
Amato DN, Amato DV, Mavrodi OV, et al. (2017) Pro-Antimicrobial Networks via Degradable Acetals (PANDAs) Using Thiol–Ene Photopolymerization Acs Macro Letters. 6: 171-175
Amato DN, Amato DV, Mavrodi OV, et al. (2016) Destruction of Opportunistic Pathogens via Polymer Nanoparticle-Mediated Release of Plant-Based Antimicrobial Payloads. Advanced Healthcare Materials
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