Search Results - "Epps, H"

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  1. 1

    Toward polymer upcycling—adding value and tackling circularity by Korley, LaShanda T. J., Epps, Thomas H., Helms, Brett A., Ryan, Anthony J.

    “…Plastics have revolutionized modern life, but have created a global waste crisis driven by our reliance and demand for low-cost, disposable materials. New…”
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  2. 2

    Directed Block Copolymer Thin Film Self-Assembly: Emerging Trends in Nanopattern Fabrication by Luo, Ming, Epps, Thomas H

    Published in Macromolecules (08-10-2013)
    “…Block copolymers have garnered significant attention in the past few decades due to their ability to self-assemble into nanoscale structures (∼10–100 nm),…”
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  3. 3

    Block copolymers: controlling nanostructure to generate functional materials - synthesis, characterization, and engineering by Epps, III, Thomas H, O'Reilly, Rachel K

    Published in Chemical science (Cambridge) (01-03-2016)
    “…In this perspective, we survey recent advances in the synthesis and characterization of block copolymers, discuss several key materials opportunities enabled…”
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  4. 4

    Block copolymer electrolytes for rechargeable lithium batteries by Young, Wen-Shiue, Kuan, Wei-Fan, Epps, III, Thomas H.

    “…ABSTRACT Ion‐conducting block copolymers (BCPs) have attracted significant interest as conducting materials in solid‐state lithium batteries. BCP self‐assembly…”
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  5. 5

    Biobased building blocks for the rational design of renewable block polymers by Holmberg, Angela L, Reno, Kaleigh H, Wool, Richard P, Epps, 3rd, Thomas H

    Published in Soft matter (01-01-2014)
    “…Block polymers (BPs) derived from biomass (biobased) are necessary components of a sustainable future that relies minimally on petroleum-based plastics for…”
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  6. 6

    100th Anniversary of Macromolecular Science Viewpoint: Polymers from Lignocellulosic Biomass. Current Challenges and Future Opportunities by O’Dea, Robert M, Willie, Jordan A, Epps, Thomas H

    Published in ACS macro letters (21-04-2020)
    “…Sustainable polymers from lignocellulosic biomass have the potential to reduce the environmental impact of commercial plastics while also offering significant…”
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  7. 7

    From Tree to Tape: Direct Synthesis of Pressure Sensitive Adhesives from Depolymerized Raw Lignocellulosic Biomass by Wang, Shu, Shuai, Li, Saha, Basudeb, Vlachos, Dionisios G, Epps, Thomas H

    Published in ACS central science (27-06-2018)
    “…We report a new and robust strategy toward the development of high-performance pressure sensitive adhesives (PSAs) from chemicals directly obtained from raw…”
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  8. 8

    Ionic-Liquid-Mediated Deconstruction of Polymers for Advanced Recycling and Upcycling by Christoff-Tempesta, Ty, Epps, Thomas H.

    Published in ACS macro letters (15-08-2023)
    “…Ionic liquids (ILs) are a promising medium to assist in the advanced (chemical and biological) recycling of polymers, owing to their tunable catalytic…”
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  9. 9

    Stimuli-responsive copolymer solution and surface assemblies for biomedical applications by Kelley, Elizabeth G, Albert, Julie N L, Sullivan, Millicent O, Epps, 3rd, Thomas H

    Published in Chemical Society reviews (07-09-2013)
    “…Stimuli-responsive polymeric materials is one of the fastest growing fields of the 21st century, with the annual number of papers published more than…”
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  10. 10

    Block Copolymer Vitrimers by Lessard, Jacob J, Scheutz, Georg M, Sung, Seung Hyun, Lantz, Kayla A, Epps, Thomas H, Sumerlin, Brent S

    Published in Journal of the American Chemical Society (08-01-2020)
    “…In this report, we merge block copolymers with vitrimers in an effort to realize the prospect of higher-order, nanoscale control over associative cross-link…”
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  11. 11

    Salt Doping in PEO-Containing Block Copolymers: Counterion and Concentration Effects by Young, Wen-Shiue, Epps, Thomas H

    Published in Macromolecules (14-04-2009)
    “…The phase behavior of lithium salt-doped poly(styrene-b-ethylene oxide) (PS−PEO) was studied as a function of salt concentration, lithium (Li) counterion (X),…”
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  12. 12

    Circularity in polymers: addressing performance and sustainability challenges using dynamic covalent chemistries by Yan, Tianwei, Balzer, Alex H, Herbert, Katie M, Epps, Thomas H, Korley, LaShanda T. J

    Published in Chemical science (Cambridge) (24-05-2023)
    “…The circularity of current and future polymeric materials is a major focus of fundamental and applied research, as undesirable end-of-life outcomes and waste…”
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  13. 13

    Sustainability of Synthetic Plastics: Considerations in Materials Life-Cycle Management by Epps, Thomas H, Korley, LaShanda T. J, Yan, Tianwei, Beers, Kathryn L, Burt, Tiffani M

    Published in JACS Au (24-01-2022)
    “…The sustainability of current and future plastic materials is a major focus of basic research, industry, government, and society at large. There is a general…”
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  14. 14

    Synthesis and Characterization of Amphiphilic Cyclic Diblock Copolypeptoids from N-Heterocyclic Carbene-Mediated Zwitterionic Polymerization of N-Substituted N-Carboxyanhydride by Lee, Chang-Uk, Smart, Thomas P., Guo, Li, Epps, Thomas H., Zhang, Donghui

    Published in Macromolecules (27-12-2011)
    “…N-Heterocyclic carbene (NHC)-mediated ring-opening polymerization of N-decyl-N-carboxylanhydride monomer (De-NCA) has been shown to occur in a controlled…”
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  15. 15

    Lignin-derivable alternatives to bisphenol A with potentially undetectable estrogenic activity and minimal developmental toxicity by Zhang, Xinwen, Mahajan, Jignesh S., Zhang, Jinglin, Korley, LaShanda T.J., Epps, Thomas H., Wu, Changqing

    Published in Food and chemical toxicology (01-08-2024)
    “…Lignin-derivable bisguaiacols/bissyringols are viable alternatives to commercial bisphenols; however, many bisguaiacols/bissyringols (e.g., bisguaiacol F…”
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  16. 16

    Bent‐But‐Not‐Broken: Reactive Metal‐Organic Framework Composites from Elastomeric Phase‐Inverted Polymers by Peterson, Gregory W., Mahle, John J., Tovar, Trenton M., Epps, Thomas H.

    Published in Advanced functional materials (01-12-2020)
    “…A phase inversion process is used to fabricate composite beads from the metal–organic framework (MOF) UiO‐66‐NH2 and the elastomeric block copolymer…”
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  17. 17

    Aromatics from Lignocellulosic Biomass: A Platform for High-Performance Thermosets by Mahajan, Jignesh S, O’Dea, Robert M, Norris, Joanne B, Korley, LaShanda T. J, Epps, Thomas H

    Published in ACS sustainable chemistry & engineering (12-10-2020)
    “…Renewable and sustainable thermosets with thermo-mechanical properties that are equivalent to, or better than, those of petroleum-derived commercial incumbents…”
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  18. 18

    Electrophoretic Deposition as a Versatile Low-Cost Tool to Construct a Synthetic Polymeric Solid-Electrolyte Interphase on Silicon Anodes: A Model System Investigation by Mou, Rownak J., Barua, Sattajit, Prasad, Ajay K., Epps, Thomas H., Yao, Koffi P. C.

    Published in ACS applied materials & interfaces (14-02-2024)
    “…The cycling of next-generation, high-capacity silicon (Si) anodes capable of 3579 mAh·g–1 is greatly hindered by the instability of the solid-electrolyte…”
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  19. 19

    Metal–organic framework polymer composite enhancement via acyl chloride modification by Peterson, Gregory W, Wang, Hui, Au, Kathleen, Epps, Thomas H

    Published in Polymer international (01-06-2021)
    “…Ideal mixed‐matrix composites fabricated from metal–organic frameworks (MOFs) and polymers should exhibit good compatibility between components, high…”
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  20. 20

    Determination of Lithium-Ion Distributions in Nanostructured Block Polymer Electrolyte Thin Films by X‑ray Photoelectron Spectroscopy Depth Profiling by Gilbert, Jonathan B, Luo, Ming, Shelton, Cameron K, Rubner, Michael F, Cohen, Robert E, Epps, Thomas H

    Published in ACS nano (27-01-2015)
    “…X-ray photoelectron spectroscopy (XPS) depth profiling with C60 + sputtering was used to resolve the lithium-ion distribution in the nanometer-scale domain…”
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