Tuesday, March 7, 2023
11:30AM - 11:42AM
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G05.00001: Miscibility and Immiscibility in Multiphase Complex Coacervate Droplets
Aman Agrawal, Angelika S Neitzel, Yan Fang, Syed Rizvi, Nur Fariesha Noor Azman, Alamgir Karim, Matthew V Tirrell
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Tuesday, March 7, 2023
11:42AM - 11:54AM
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G05.00002: Electrostatic Manipulation of Weak Polyelectrolyte Brushes
Christopher Balzer, Zhen-Gang Wang
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Tuesday, March 7, 2023
11:54AM - 12:06PM
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G05.00003: Engineering periodic dynamic polymer microstructure to design artificial muscles and multilayered, self-healing electronics
Christopher B Cooper, Jian Qin, Zhenan Bao
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Tuesday, March 7, 2023
12:06PM - 12:18PM
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G05.00004: Electron Transport Physics of n-Type Semiconducting Polymers: Effects of chain topology and chain length
Duyen K Tran, Sarah M West, Samson A Jenekhe
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Tuesday, March 7, 2023
12:18PM - 12:30PM
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G05.00005: Surface and Bulk Relaxation of Vapour-Deposited Polystyrene Glasses
Junjie Yin, Michael F Thees, Christian Pedersen, Andreas Carlson, Thomas Salez, James A Forrest
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Tuesday, March 7, 2023
12:30PM - 12:42PM
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G05.00006: Linking molecular structure to macroscopic rheology of dynamically associating polymer networks
Pamela Cai, Andrew J Spakowitz, Sarah Heilshorn, Matthew Webber, Brad Krajina
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Tuesday, March 7, 2023
12:42PM - 12:54PM
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G05.00007: Predicting semiconducting polymer blend local structures and miscibility with simulations
Puja Agarwala, Enrique D Gomez, Scott T Milner
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Tuesday, March 7, 2023
12:54PM - 1:06PM
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G05.00008: Atomistic Simulations of Drops and Nanoparticles Interacting with Surface Grafted Polymeric Layers
Sai A Etha
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Tuesday, March 7, 2023
1:06PM - 1:18PM
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G05.00009: Controlling interface topography via degradation of soft nanogel particles adsorbed at a liquid-liquid interface
Vaibhav A Palkar, Olga Kuksenok
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Tuesday, March 7, 2023
1:18PM - 1:30PM
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G05.00010: Molecular structure and conformational design of Donor-Accepter conjugated polymers to enable predictable optoelectronic property
Zhiqiang Cao
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Tuesday, March 7, 2023
1:30PM - 1:42PM
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G05.00011: Machine learning enhanced computational reverse-engineering analysis for scattering experiments (CREASE) for analyzing fibrillar structures in polymer solutions
Zijie Wu, Arthi Jayaraman
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