Equilibrium Self-Assembly
FOCUS · MAR-A61 · ID: 3095489
Presentations
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Programming Structure and Transformations of Nanoscale Materials
ORAL · Invited
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Presenters
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Oleg Gang
Brookhaven National Laboratory (BNL), Columbia University and Brookhaven National Laboratory
Authors
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Oleg Gang
Brookhaven National Laboratory (BNL), Columbia University and Brookhaven National Laboratory
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High Strength, Low-Density Mechanical Metamaterials Through DNA-based Self-Assembly
ORAL
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Presenters
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Katerina R DeOlivares
Columbia University
Authors
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Katerina R DeOlivares
Columbia University
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Aaron N Michelson
Center for Functional Nanomaterial, Brookhaven National Lab, Brookhaven National Lab, Brookhaven National Laboratory
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Kim Kisslinger
Brookhaven National Lab, Brookhaven National Laboratory, Brookhaven National Laboratory (BNL), Center for Functional Nanomaterial
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Oleg Gang
Brookhaven National Laboratory (BNL), Columbia University and Brookhaven National Laboratory
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High Throughput Exploration of Nanoparticle Assemblies using Physically-Tethered DNA Bonds
ORAL
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Presenters
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Huat Thart T Chiang
University of Washington
Authors
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Huat Thart T Chiang
University of Washington
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Daniel McKeen
Columbia University
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Nicholas Herringer
University of Chicago
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Andrew L Ferguson
University of Chicago
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Oleg Gang
Brookhaven National Laboratory, Columbia University
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Lilo Pozzo
University of Washington
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Abstract Withdrawn
ORAL Withdrawn
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Design Strategies for Length Control of Colloidomer Chains by Magnetic Alignment
ORAL
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Presenters
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Nicolas Judd
New York University (NYU)
Authors
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Nicolas Judd
New York University (NYU)
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Lucas Sixdenier
New York University (NYU)
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Scarlett Schwimmer
Basis Independent Manhattan
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Angus McMullen
New York University (NYU)
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Jasna Brujic
New York University (NYU)
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From colloidomer chains, through foldamer nets, to the assembly of icoahedral shells
ORAL
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Presenters
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Rabeya Hussaini
New York University (NYU)
Authors
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Rabeya Hussaini
New York University (NYU)
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Lucas Sixdenier
New York University (NYU)
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Maitane Muñoz Basagoiti
ESPCI Paris
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Zorana Zeravcic
ESPCI Paris
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Jasna Brujic
New York University (NYU)
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Abstract Withdrawn
ORAL Withdrawn
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Design Tools for Economical and Multifarious Self Assembly
ORAL
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Publication: M.C. Hübl, C.P. Goodrich, Accessing Semi-Addressable Self Assembly with Efficient Structure Enumeration. Under review at PRL.<br><br>M.C. Hübl, T.E. Videbaek, D. Hayakawa, W.B. Rogers, C.P. Goodrich, The Structure of Equilibrium Self Assembly. In preparation.
Presenters
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Maximilian Huebl
Institute of Science and Technology Austria
Authors
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Maximilian Huebl
Institute of Science and Technology Austria
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Carl P Goodrich
Institute of Science and Technology Austria
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Abstract Withdrawn
ORAL Withdrawn
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Self-assembly, interrupted: synthesizing metastable structures by inducing solid–solid phase transformations
ORAL
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Presenters
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Maya M Martirossyan
New York University, Cornell University, Department of Materials Science and Engineering, Cornell University, Ithaca, NY; Center for Soft Matter Research, Department of Physics, New York University, New York, NY
Authors
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Maya M Martirossyan
New York University, Cornell University, Department of Materials Science and Engineering, Cornell University, Ithaca, NY; Center for Soft Matter Research, Department of Physics, New York University, New York, NY
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Sophia J Janoyan
R. F. Smith School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, NY
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Rachael S Skye
Department of Materials Science and Engineering, Cornell University, Ithaca, NY
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Julia Dshemuchadse
Cornell University, Department of Materials Science and Engineering, Cornell University, Ithaca, NY
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The emergence of bulk structure in clusters via isotropic multi-well pair potentials
ORAL
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Presenters
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Jennifer E Doyle
Wellesley College
Authors
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Jennifer E Doyle
Wellesley College
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Maya M Martirossyan
New York University, Cornell University, Department of Materials Science and Engineering, Cornell University, Ithaca, NY; Center for Soft Matter Research, Department of Physics, New York University, New York, NY
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Julia Dshemuchadse
Cornell University, Department of Materials Science and Engineering, Cornell University, Ithaca, NY
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Erin G Teich
Wellesley College
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Orientational dynamics governs the pathways of entropic crystallization of Brownian squares
ORAL
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Publication: 1. Orientational dynamics governs the pathways of entropic crystallization of Brownian squares (arXiv:2405.07352)
Presenters
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Debojit Chanda
Indian Institute of Technology Kanpur
Authors
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Debojit Chanda
Indian Institute of Technology Kanpur
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Thomas G Mason
University of California, Los Angeles
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Manas Khan
Indian Institute of Technology Kanpur
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