Invited Session: Dillon Medal Symposium
FOCUS · J20 ·
Presentations
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John H. Dillon Medal Lecture: Magnetic Field Directed Self-Assembly of Block Copolymers and Surfactant Mesophases
COFFEE_KLATCH · Invited
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Authors
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Chinedum Osuji
- Yale University
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Directed Assembly of Block Polymers
ORAL
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Authors
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Edwin Thomas
- Department of Materials Science and NanoEngineering Rice University
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Failure of Batteries with Block Copolymer Electrolytes and Lithium Metal Anodes
ORAL
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Authors
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Nitash Balsara
- Univ of California - Berkeley
- UC Berkeley
- University of California, Berkeley
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Didier Devaux
- Lawrence Berkeley National Laboratory
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Katherine Harry
- Univ of California - Berkeley
- UC Berkeley
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Dilworth Parkinson
- Lawrence Berkeley National Laboratory
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Rodger Yuan
- Univ of California - Berkeley
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Daniel Hallinan
- Florida A\&M University–Florida State University
- Florida State Univ
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Alastair MacDowell
- Lawrence Berkeley National Laboratory
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Polymer Dynamics under Cylindrical Nano-Confinement
ORAL
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Authors
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Karen Winey
- University of Pennsylvania
- Univ of Pennsylvania
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Wei-Shao Tung
- University of Pennsylvania
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Robert Riggleman
- University of Pennsylvania
- Univ of Pennsylvania
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The physical aging of star-shaped macromolecules: role of functionality
ORAL
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Authors
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Peter Green
- University of Michigan
- University of Michigan, Ann Arbor
- Univ of Michigan - Ann Arbor
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Bradley Frieberg
- University of Michigan
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Emmanouil Glynos
- University of Michigan
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Georgios Sakellariou
- University of Athens
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Solvent, Thermal and Solvent-Thermal Methods on Block Copolymer Thin Films
ORAL
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Authors
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Thomas Russell
- University of Massachusetts
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Xiaodan Gu
- University of Massachusetts
- Stanford University
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Ilja Gunkel
- ALS, Lawrence Berkeley National Lab
- Lawrence Berkeley National Laboratory
- Adolphe Merkle Institute
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Alexander Hexemer
- Lawrence Berkeley Lab
- Lawrence Berkeley Natl Lab
- ALS, Lawrence Berkeley National Lab
- Lawrence Berkeley National Laboratory
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Predicting the distribution of functional nanoparticles in block polymers
ORAL
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Authors
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Robert Riggleman
- University of Pennsylvania
- Univ of Pennsylvania
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Coarse-Grained Simulation of Ion Diffusion in Polymer Melts: Effect of Physical Crosslinking and Finite Concentration
ORAL
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Authors
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Zhen-Gang Wang
- California Institute of Technology
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Umi Yamamoto
- California Institute of Technology
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Thermodynamics and Kinetics of Defect Annihilation in Block Copolymer Assembly
ORAL
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Authors
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Juan de Pablo
- University of Chicago
- Univ of Chicago
- Institute for Molecular Engineering, University of Chicago
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Polymer stability and function for electrolyte and mixed conductor applications
ORAL
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Authors
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Paula Hammond
- Massachusetts Institute of Technology
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Nicole Davis
- Massachusetts Institute of Technology
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David Liu
- Massachusetts Institute of Technology
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Chibueze Amanchukwu
- Massachusetts Institute of Technology
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Nate Lewis
- California Institute of Technology
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Yang Shao-Horn
- Massachusetts Institute of Technology
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Structural evolution of polyelectrolyte-complex-core micelles and ordered-phase bulk materials
ORAL
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Authors
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Matthew Tirrell
- University of Chicago
- Univ of Chicago
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Daniel Krogstad
- University of Illinois, Urbana-Champaign
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Edward Kramer
- University of California, Santa Barbara
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Flexible Battery Cathodes Enabled by Conductive Block Copolymers
ORAL
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Authors
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Jodie Lutkenhaus
- Texas A\&M University
- Texas A\&M University, Chemical Engineering Department
- Artie McFerrin Department of Chemical Engineering, Texas A\&M University
- Department of Chemical Engineering at Texas A\&M University
- Texas A\&M University, Department of Chemical Engineering
- Texas A&M University
- Texas A\&M Univ
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Rafael Verduzco
- Rice University
- Rice Univ
- William Marsh Rice University
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Hyosung An
- Texas A\&M University, Chemical Engineering
- Texas A\&M Univ
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Yen-Hao Lin
- Rice University
- Rice Univ
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Swelling of polyelectrolyte and polyzwitterion brushes by humid vapors
ORAL
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Authors
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Jan Genzer
- North Carolina State Univ
- North Carolina State University
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Casey Galvin
- North Carolina State Univ
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Michael Dimitriou
- NIST
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Sushil Satija
- NIST
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