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Structure and Dynamics of Ion-Containing Polymers I

FOCUS · Q19 · ID: 47500






Presentations

  • Ion Transport in Polyacrylonitrile (PAN) Based Electrolytes

    ORAL

    Presenters

    • Changhao Liu

      Oak Ridge National Lab

    Authors

    • Changhao Liu

      Oak Ridge National Lab

    • Robert Sacci

      Oak Ridge National Laboratory, Oak Ridge National Lab

    • Ritu Sahore

      Oak Ridge National Lab

    • Gabriel Veith

      Oak Ridge National Lab

    • Chelsea Chen

      Oak Ridge National Lab

    View abstract →

  • Polymer-ceramic composite electrolyte for high energy lithium batteries

    ORAL · Invited

    Publication: 1. Pandian, A. S.; Chen, X. C.; Chen, J.; Lokitz, B. S.; Ruther, R. E.; Yang, G.; Lou, K.; Nanda, J.; Delnick, F. M.; Dudney, N. J., Facile and scalable fabrication of polymer-ceramic composite electrolyte with high ceramic loadings. Journal of Power Sources 2018, 390, 153-164.<br>2. Chen, X. C.; Liu, X. M.; Pandian, A. S.; Lou, K.; Delnick, F. M.; Dudney, N. J., Determining and Minimizing Resistance for Ion Transport at the Polymer/Ceramic Electrolyte Interface. Acs Energy Letters 2019, 4, 1080-1085.<br>3. Chen, X. C.; Sacci, R. L.; Osti, N. C.; Tyagi, M.; Wang, Y.; Palmer, M. J.; Dudney, N. J., Study of segmental dynamics and ion transport in polymer–ceramic composite electrolytes by quasi-elastic neutron scattering. Molecular Systems Design & Engineering 2019, 4, 379-385.<br>4. Palmer, M. J.; Kalnaus, S.; Dixit, M. B.; Westover, A. S.; Hatzell, K. B.; Dudney, N. J.; Chen, X. C., A three-dimensional interconnected polymer/ceramic composite as a thin film solid electrolyte. Energy Storage Materials 2020, 26, 242-249.<br>5. Peng, J.; Xiao, Y.; Clarkson, D. A.; Greenbaum, S. G.; Zawodzinski, T. A.; Chen, X. C., A Nuclear Magnetic Resonance Study of Cation and Anion Dynamics in Polymer–Ceramic Composite Solid Electrolytes. ACS Applied Polymer Materials 2020, 2, 1180-1189.<br>6. Chen, X. C.; Zhang, Y. M.; Merrill, L. C.; Soulen, C.; Lehmann, M. L.; Schaefer, J. L.; Du, Z. J.; Saito, T.; Dudney, N. J., Gel composite electrolyte - an effective way to utilize ceramic fillers in lithium batteries. Journal of Materials Chemistry A 2021, 9 (10), 6555-6566.<br>7. Chen, X. C.; Soulen, C.; Burdette-Trofimov, M. K.; Liu, C.; Tyagi, M.; Heroux, L.; Doucet, M.; Veith, G.M., The origin of rate limitations in solid polymer batteries – a structure and segmental dynamics study on the cathode, in preparation

    Presenters

    • Chelsea Chen

      Oak Ridge National Lab

    Authors

    • Chelsea Chen

      Oak Ridge National Lab

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  • Using in situ SAXS to Investigate Salt Concentration Gradients, Morphological Changes, and Cell Failure Mechanisms in Block Copolymer Electrolytes at the Limiting Current

    ORAL

    Presenters

    • Lorena S Grundy

      University of California, Berkeley

    Authors

    • Lorena S Grundy

      University of California, Berkeley

    • Michael D Galluzzo

      University of California, Berkeley

    • Christopher J Takacs

      SLAC National Accelerator Laboratory

    • Nitash P Balsara

      University of California, Berkeley

    View abstract →

  • Polyelectrolyte Diffusion in Convex Lens-induced Confinement (CLiC)

    ORAL

    Presenters

    • Brittany K Roopnarine

      Case Western Reserve University

    Authors

    • Brittany K Roopnarine

      Case Western Reserve University

    • Spencer Schmidt

      Case Western Reserve University

    • Kevin Maxwell

      Case Western Reserve University

    • Svetlana Morozova

      Case Western Reserve University, Case Western Reserve Univesrity

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  • Competition of folding-induced assembly and liquid-liquid phase separation produces diverse morphologies of peptide coacervates

    ORAL

    Presenters

    • Nairiti J Sinha

      University of California, Santa Barbara, University of Delaware

    Authors

    • Nairiti J Sinha

      University of California, Santa Barbara, University of Delaware

    • Craig J Hawker

      University of California, Santa Barbara, University of California Santa Barbara

    • Matthew E Helgeson

      University of California, Santa Barbara, 1 Department of Chemical Engineering, University of California Santa Barbara, Department of Chemical Engineering and Materials Research Laboratory, University of California, Santa Barbara, 93106, United States

    View abstract →