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Microscopic Self-Assembly I

ORAL · M33 · ID: 1093950






Presentations

  • Microbial interaction with micrometer-scale wrinkled surfaces subjected to fluid shear

    ORAL

    Publication: Pellegrino, L., Kriem, L. S., Robles, E. S., & Cabral, J. T. (2022). Microbial Response to Micrometer-Scale Multiaxial Wrinkled Surfaces. ACS Applied Materials & Interfaces, 14(27), 31463-31473

    Presenters

    • Luca Pellegrino

      Humanitas University

    Authors

    • Luca Pellegrino

      Humanitas University

    • Giovanni Savorana

      ETH Zurich

    • Cristina Belgiovine

      Univeristà degli Studi di Pavia

    • Valeriano Vinci

      Humanitas Research Hospital

    • Benedetta Agnelli

      Humanitas Research Hospital

    • Gerardus Janszen

      Politecnico di Milano

    • Luca Di Landro

      Politecnico di Milano

    • Marco Klinger

      Humanitas Research Hospital

    • Eleonora Secchi

      ETH Zurich

    • Joao T Cabral

      Imperial College London

    • Roberto Rusconi

      Humanitas University

    View abstract →

  • Nanoscale porosity in microellipsoids controls interparticle capillary attraction and assembly at fluid interfaces

    ORAL

    Publication: Trevenen, S., Hamilton, H. S. C., Ribbe, A., Bradley, L. C. and Beltramo, P.J.* "Nanoscale porosity in microellipsoids cloaks interparticle capillary attraction at fluid interfaces." In revision.

    Presenters

    • Peter J Beltramo

      University of Massachusetts Amherst

    Authors

    • Peter J Beltramo

      University of Massachusetts Amherst

    • Samuel Trevenen

      University of Massachusetts Amherst

    • Heather Hamilton

      University of Massachusetts Amherst

    • Anisur Rahman

      University of Massachusetts Amherst

    • Alexander E Ribbe

      University of Massachusetts Amherst

    • Laura C Bradley

      University of Massachusetts Amherst

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  • 3D Printing of Programmable Self-assembly to Bouligand Nanostructures

    ORAL

    Publication: 1- M. Esmaeili, K. George, G. Rezvan, N. Taheri-Qazvini, R. Zhang, and M. Sadati, "Capillary Flow Characterizations of Chiral Nematic Cellulose Nanocrystal Suspensions", Langmuir 2022, 38, 2192.<br>2- M. Esmaeili, S. Norouzi, K. George, G. Rezvan, N. Taheri-Qazvini, and M. Sadati, "3D printing-Assisted Self-assembly to Bio-inspired Bouligand Nanostructures", Submitted (2022).

    Presenters

    • MONIROSADAT(Sanaz) SADATI

      The University of South Carolina

    Authors

    • MONIROSADAT(Sanaz) SADATI

      The University of South Carolina

    • Mohsen Esmaeili

      The University of South Carolina

    • Kyle George

      The University of South Carolina

    • Sepideh Norouzi

      University of South Carolina

    • Jeremy Money

      The University of South Carolina

    • Nader Taheri-Qazvini

      The University of South Carolina

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  • Probing 2D Phase Separation in Mixed Silica and Gold Nanoparticle Assemblies

    ORAL

    Publication: Probing 2D Phase Separation in Mixed Silica and Gold Nanoparticle Assemblies<br>

    Presenters

    • Zachary Fink

      University of Massachusetts Amherst

    Authors

    • Zachary Fink

      University of Massachusetts Amherst

    • Paul Y Kim

      Lawrence Berkeley National Laboratory

    • Xuefei Wu

      Lawrence Berkeley National Lab

    • Thomas P Russell

      University of Massachusetts Amherst

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  • An STDP-based encoding method for associative and composite data

    ORAL

    Publication: Yoon, HG., Kim, P. An STDP-based encoding method for associative and composite data. Sci Rep 12, 4666 (2022). https://doi.org/10.1038/s41598-022-08469-6

    Presenters

    • Hong-Gyu Yoon

      UNIST(Ulsan National Institute of Science and Technology)

    Authors

    • Hong-Gyu Yoon

      UNIST(Ulsan National Institute of Science and Technology)

    • Pilwon Kim

      UNIST(Ulsan National Institute of Science and Technology)

    View abstract →