Faculty Profile
Sijia Huang
Assistant Professor
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CV
Curriculum Vitae -
Office
3228 MEB -
Website
https://multimateriallab.che.utah.edu/ -
Email
sijia.huang@utah.edu
Research Interests
Additive Manufacturing
Material Design
Polymer Science
Soft Matter
Awards & Honors
Director’s Excellence in Publication Awards, Lawrence Livermore National Laboratory 2024
President’s Lindau Nobel Laureate Meetings Fellow, University of California 2023
PMSE Future Faculty Scholar, American Chemical Society 2022
Lawrence Postdoctoral Research Fellowship, Lawrence Livermore National Laboratory 2021 - 2024
Publications
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(2024). Ductile Glassy Polymer Networks Capable of Large Plastic Deformation and Heat-Induced Elastic Recovery. ACS Materials Letters.
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(2024). Modeling Phase Separation of Free-Radical Polymerizations in Crosslinked Networks. Macromolecules.
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(2023). Simple Bioparticle Filtration Device Based on an Ultralow-Fouling Zwitterionic Polyurethane Membrane for Rapid Large-Volume Separation of Plasma and Viruses from Whole Blood. Membranes.
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(2023). Virtual Volumetric Additive Manufacturing (VirtualVAM). Advanced Materials Technologies.
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(2023). One-pot ternary sequential reactions for photopatterned gradient multimaterials. Matter.
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(2021). Determining Michael acceptor reactivity from kinetic, mechanistic, and computational analysis for the base-catalyzed thiol-Michael reaction. Polymer Chemistry.
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(2021). Additive Manufacture of Dynamic Thiol-ene Networks Incorporating Anhydride-Derived Reversible Thioester Links. ACS Applied Materials and Interfaces.
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(2020). Chemical recycling of poly(thiourethane) thermosets enabled by dynamic thiourethane bonds. Polymer Chemistry.
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(2020). Thiol–Anhydride Dynamic Reversible Networks. Angewandte Chemie International Edition.
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(2020). High-Efficiency Radical Photopolymerization Enhanced by Autonomous Dark Cure. Macromolecules.
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(2020). Snakeskin-Inspired Elastomers with Extremely Low Coefficient of Friction under Dry Conditions. ACS Applied Materials and Interfaces.
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(2019). Realizing High Refractive Index Thiol-X Materials: A General and Scalable Synthetic Approach. ACS Materials Letters.
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(2018). Dental Restorative Materials Based on Thiol-Michael Photopolymerization. https://doi.org/10.1177/0022034518755718.
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(2018). Assessment of TEMPO as a thermally activatable base generator and its use in initiation of thermally-triggered thiol-Michael addition polymerizations. Polymer Chemistry.
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(2018). Mechanistic Modeling of the Thiol-Michael Addition Polymerization Kinetics: Structural Effects of the Thiol and Vinyl Monomers. Macromolecules.
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(2018). Multifunctional monomers based on vinyl sulfonates and vinyl sulfonamides for crosslinking thiol-Michael polymerizations: monomer reactivity and mechanical behavior. Chemical Communications.
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(2017). Wavelength-Selective Sequential Polymer Network Formation Controlled with a Two-Color Responsive Initiation System. Macromolecules.
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(2016). Controlling the morphology of immiscible cocontinuous polymer blends via silica nanoparticles jammed at the interface. Macromolecules.
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(2015). Stabilization of PE/PEO Cocontinuous Blends by Interfacial Nanoclays. Macromolecules.
