Programmable Self-Assembly: Particle, Interaction and Pathway Design (Magnetic Interactions)
FOCUS · S07 · ID: 380938
Presentations
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Magnetic Handshake Materials: an Integrative Programmable Assembly Platform
Invited
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Presenters
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Chrisy Xiyu Du
- School of Engineering and Applied Sciences, Harvard University
Authors
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Chrisy Xiyu Du
- School of Engineering and Applied Sciences, Harvard University
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Designer Potential Energy Surfaces via Magnetic Interactions
ORAL
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Presenters
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Robert Distasio
- Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University
- Cornell University
- Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY
Authors
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Yan Yang
- Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University
- Cornell University
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Lijie Tu
- Chemistry and Chemical Biology, Cornell University
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Yuchao Chen
- Physics, Cornell University
- Massachusetts Institute of Technology
- Cornell University
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Dorothy Leung
- Chemistry and Chemical Biology, Cornell University
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Ran Niu
- Physics Department, Cornell University
- Physics, Cornell University
- Cornell University
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Hsin-Yu Ko
- Chemistry and Chemical Biology, Cornell University
- Princeton University
- Department of Chemistry and Chemical Biology, Cornell University
- Cornell University
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Yang Yang
- Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY
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Zachary Sparrow
- Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University
- Cornell University
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Paul L McEuen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
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Itai Cohen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
- Department of Physics, Cornell University
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Robert Distasio
- Chemistry and Chemical Biology, Cornell University
- Department of Chemistry and Chemical Biology, Cornell University
- Cornell University
- Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY
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Magnetic coupling in colloidal clusters for hierarchical self-assembly
ORAL
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Presenters
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Laura Rossi
- Delft University of Technology
Authors
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Joe G Donaldson
- Delft University of Technology
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Peter Schall
- University of Amsterdam
- Institute of Physics, University of Amsterdam
- Institure of Physics, University of Amsterdam
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Laura Rossi
- Delft University of Technology
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Designing the Persistence Length of Digital Magnetic Polymers
ORAL
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Presenters
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Hanyu Zhang
- Applied and Engineering Physics, Cornell University
Authors
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Hanyu Zhang
- Applied and Engineering Physics, Cornell University
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Chrisy Xiyu Du
- School of Engineering and Applied Sciences, Harvard University
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Ran Niu
- Physics Department, Cornell University
- Physics, Cornell University
- Cornell University
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Tanner Pearson
- Applied and Engineering Physics, Cornell University
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Michael Brenner
- Harvard University
- School of Engineering and Applied Sciences, Harvard University
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Paul L McEuen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
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Itai Cohen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
- Department of Physics, Cornell University
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Pareto Fronts for Design: Optimizing Free Energy and Kinetic Accessibility for Self Assembling Colloids
ORAL
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Presenters
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Anthony Trubiano
- New York Univ NYU
Authors
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Anthony Trubiano
- New York Univ NYU
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Miranda Holmes-Cerfon
- Mathematics, Courant Institute
- Courant Inst
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Tuning Kinetic Properties of Self-Assembled Systems
ORAL
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Presenters
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Ella King
- Harvard University
Authors
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Ella King
- Harvard University
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Carl Goodrich
- IST Austria
- Institute of Science and Technology Austria
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Sam Schoenholz
- Google Brain
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Ekin D Cubuk
- Google Brain
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Michael Brenner
- Harvard University
- School of Engineering and Applied Sciences, Harvard University
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Modelling a colloidal network that can dynamically stiffen via bacterial circadian proteins, KaiABC
ORAL
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Presenters
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Lauren Melcher
- Rochester Institute of Technology
Authors
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Lauren Melcher
- Rochester Institute of Technology
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Elisabeth Rennert
- University of Chicago
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Jennifer L Ross
- Syracuse University
- Department of Physics, Syracuse University
- Physics, Syracuse University
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Michael Rust
- University of Chicago
- Molecular Genetics and Cell Biology, University of Chicago
- Department of Molecular Genetics and Cell Biology, University of Chicago
- Molecular Genetics and Cell Biology, The University of Chicago
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Rae M Robertson-Anderson
- University of San Diego
- Department of Physics and Biophysics, University of San Diego
- Biophysics, University of San Diego
- Physics and Biophysics, University of SanDiego
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Moumita Das
- Rochester Institute of Technology
- Rochester Insititute of Technology
- School of Physics and Astronomy, Rochester Institute of Technology
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Winner-take-all dynamics in self-assembly
ORAL
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Presenters
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Jackson O'Brien
- Physics, University of Chicago
Authors
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Jackson O'Brien
- Physics, University of Chicago
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Constantine G Evans
- Hamilton Institute, Maynooth University
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Erik Winfree
- Computer Science, Computation and Neural Systems, Bioengineering, California Institute of Technology
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Arvind Murugan
- Physics, University of Chicago
- University of Chicago
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Tunable Aggregation-Induced Emission as an Indicator of Intermolecular Distance in Supramolecular Assembly
ORAL
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Presenters
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Xinyu Sun
- Polymer Science, University of Akron
- The University of Akron
Authors
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Xinyu Sun
- Polymer Science, University of Akron
- The University of Akron
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Shuailin Zhang
- Polymer Science, University of Akron
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Hui Li
- Polymer Science, University of Akron
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JIANCHENG LUO
- Polymer Science, University of Akron
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Tong Liu
- Polymer Science, University of Akron
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Stephen Z D Cheng
- Polymer Science, University of Akron
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Tianbo Liu
- Polymer Science, University of Akron
- The University of Akron
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Controlling colloidal self-organization with light
ORAL
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Presenters
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Dominique Davenport
- University of California, Merced
Authors
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Dominique Davenport
- University of California, Merced
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Autonomous oscillations in the structure-function properties of dynamically regulated active colloidal networks
ORAL
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Presenters
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Vina Macias
- Rochester Institute of Technology
Authors
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Vina Macias
- Rochester Institute of Technology
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Lauren Melcher
- Rochester Institute of Technology
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Jennifer L Ross
- Syracuse University
- Department of Physics, Syracuse University
- Physics, Syracuse University
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Michael Rust
- University of Chicago
- Molecular Genetics and Cell Biology, University of Chicago
- Department of Molecular Genetics and Cell Biology, University of Chicago
- Molecular Genetics and Cell Biology, The University of Chicago
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Rae M Robertson-Anderson
- University of San Diego
- Department of Physics and Biophysics, University of San Diego
- Biophysics, University of San Diego
- Physics and Biophysics, University of SanDiego
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Moumita Das
- Rochester Institute of Technology
- Rochester Insititute of Technology
- School of Physics and Astronomy, Rochester Institute of Technology
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Development of Magnetic Handshake DNA
ORAL
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Presenters
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Jakin Ng
- Physics, Cornell University
Authors
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Jakin Ng
- Physics, Cornell University
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Hanyu Zhang
- Applied and Engineering Physics, Cornell University
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Chrisy Xiyu Du
- School of Engineering and Applied Sciences, Harvard University
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Tanner Pearson
- Applied and Engineering Physics, Cornell University
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Paul L McEuen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
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Michael Brenner
- Harvard University
- School of Engineering and Applied Sciences, Harvard University
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Itai Cohen
- Cornell University
- Physics, Cornell University
- Physics Department, Cornell University
- Department of Physics, Cornell University
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Creating interparticle forces with sound
ORAL
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Presenters
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Nicholas St Clair
- University of California, Merced
Authors
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Nicholas St Clair
- University of California, Merced
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Dominique Davenport
- University of California, Merced
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Arnold D.Kim
- University of California, Merced
- Applied Mathematics, University of California. Merced
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Dustin P Kleckner
- University of California, Merced
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