Self-Assembly of Soft Matter Materials in Multi-Component Solvent Systems
FOCUS · W26 · ID: 46611
Presentations
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Responsive Interfacial Assemblies
ORAL
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Presenters
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Thomas P Russell
University of Massachusetts Amherst
Authors
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Thomas P Russell
University of Massachusetts Amherst
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Shaowei SHi
Beijing Advanced Innovation Center for Soft Matter Science and Engineering,
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Structural and textural diversity during phase separation of binary mixtures of smectic and isotropic fluids
ORAL
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Presenters
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Yuma Morimitsu
University of Pennsylvania, Kyushu Univ
Authors
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Yuma Morimitsu
University of Pennsylvania, Kyushu Univ
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Nakyung Kim
University of Pennsylvania
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Manesh Gopinadhan
Exxon Mobil Corporation
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Eric B Sirota
Exxon Mobil Corporation
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Ozcan Altintas
Exxon Mobil Corporation
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Jonathan D Saathoff
Exxon Mobil Corporation
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Paul A Heiney
University of Pennsylvania
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Karen I Winey
University of Pennsylvania
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Chinedum Osuji
University of Pennsylvania
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Controlling Microphase Separation In Graphene Dispersions - Diffusion-Limited Aggregation to MesoCrystallization
ORAL
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Publication: Planned paper: MesoCrystallization of Graphene From Thermodynamically Stable Dispersions
Presenters
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John Texter
Eastern Michigan University, School of Engineering, Coating Research Institute
Authors
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David Z Ager
Eastern Michigan University, School of Engineering, Coating Research Institute
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John Texter
Eastern Michigan University, School of Engineering, Coating Research Institute
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Aggregation of charge colloidal particles in the binary solvent: not all sizes are equal
ORAL
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Publication: 1) Jose Villanueva Valencia, Hongyu Guo, Ramon Castaneda-Priego, Yun Liu, "Concentration and size effects on the size-selective particle purification method using the critical Casimir force", Physical Chemistry Chemical Physics, 23, 4404 (2021)<br>2) Hongyu Guo, Gheorghe Stan, Yun Liu, "Nanoparticle separation based on size-dependent aggregation of nanoparticles due to the critical Casimir effect", Soft Matter, 14, 1311-1318, (2018)
Presenters
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Yun Liu
National Institute of Standards and Tech
Authors
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Yun Liu
National Institute of Standards and Tech
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Ramon Castaneda Priego
Universidad de Guanajuato
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Jose R Villanueva-Valencia
Universidad de Guanajuato
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Tunable Orientation and Assembly of Polymer-Grafted Nanocubes atFluid-Fluid Interfaces
ORAL
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Publication: 1. T.Y. Tang, Y. Zhou, and G. Arya. (2019) "Interfacial Assembly of Tunable Anisotropic Nanoparticle Architectures." ACS Nano 13:4111-4123.<br>Planned papers:<br>1. "Interface-Mediated Assembly of Polymer-Grafted Nanocubes at Interfaces<br>2. "Interfacial Assembly of Nanocubes with Two Species of Polymer Grafts"
Presenters
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Yilong Zhou
Duke University
Authors
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Yilong Zhou
Duke University
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Tsung-Yeh Tang
University of California, San Diego
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Brian H Lee
Duke University
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Gaurav Arya
Duke University
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Spatiotemporal Evolution of Diffusiophoresis in a 2D Drying of mixed-sized Colloidal Droplet
ORAL
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Presenters
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Zhiyu Jiang
Lehigh University
Authors
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Zhiyu Jiang
Lehigh University
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H Daniel Ou-Yang
Lehigh Univ
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Bicontinuous Biphasic Liquid Emulsions from Ternary Fluid Mixtures
ORAL · Invited
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Presenters
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Daeyeon Lee
University of Pennsylvania, Chemical and Biomolecular Engineering Department, University of Pennsylvania
Authors
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Daeyeon Lee
University of Pennsylvania, Chemical and Biomolecular Engineering Department, University of Pennsylvania
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Solvent Segregation Driven Gel (SeedGel) Formation via Self-assembly of Nanoparticles in Binary Solvents
ORAL
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Publication: 1. Xi, Y.; Lankone, R. S.; Sung, L.-P.; Liu, Y. Tunable Thermo-Reversible Bicontinuous Nanoparticle Gel Driven by the Binary Solvent Segregation. Nat. Commun. 2021, 12 (1), 910 DOI: 10.1038/s41467-020-20701-3.<br>2. Xi, Y.; Leão, J. B.; Ye, Q.; Lankone, R. S.; Sung, L.-P.; Liu, Y. Controlling Bicontinuous Structures through a Solvent Segregation-Driven Gel. Langmuir 2021, 37 (6), 2170–2178 DOI: 10.1021/acs.langmuir.0c03472.
Presenters
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Yuyin Xi
University of Delaware/NIST
Authors
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Yuyin Xi
University of Delaware/NIST
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Yun Liu
National Institute of Standards and Technology
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A Generic Explanation of the Mechanism of Co-solvency
ORAL
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Presenters
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Xiangyu Zhang
Mississippi State University
Authors
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Xiangyu Zhang
Mississippi State University
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Jing Zong
Mississippi State Univ
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Dong Meng
Mississippi State University, Mississippi State Univ
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Cononsolvency-induced Micellization of Diblock Copolymers in Multi-solvent Solutions
ORAL
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Presenters
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Dong Meng
Mississippi State University, Mississippi State Univ
Authors
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Dong Meng
Mississippi State University, Mississippi State Univ
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Xiangyu Zhang
Mississippi State University
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Bicontinuous soft solids with a gradient in channel size designed for energy storage applications
ORAL
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Publication: D. J. French, A. B. Schofield and J. H. J. Thijssen, Bicontinuous soft solids with a gradient in channel size designed for energy storage applications (arXiv preprint in preparation).
Presenters
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Job Thijssen
Univ of Edinburgh
Authors
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Job Thijssen
Univ of Edinburgh
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Andrew B Schofield
The University of Edinburgh
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David J French
The University of Edinburgh
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Self-assembly of two-component soft systems controlled by pairwise interactions.
ORAL
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Publication: - A. Scacchi, M. Sammalkorpi, T. Ala-Nissila "Self-assembly of binary solutions to complex structures." Journal of Chemical Physics 155 (2021): 014904. DOI: https://doi.org/10.1063/5.0053365<br>- A. Scacchi, S. J. Nikkhah, M. Sammalkorpi, T. Ala-Nissila "Self-assembly in soft matter with multiple length scales." Physical Review Research 3.2 (2021): L022008. DOI: https://doi.org/10.1103/PhysRevResearch.3.L022008
Presenters
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Alberto S Scacchi
Aalto University
Authors
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Alberto S Scacchi
Aalto University
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Sousa Javan Nikkhah
University of Limerick
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Maria Sammalkorpi
Aalto University
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Tapio Ala-Nissila
Aalto University, QTF Center of Excellence, Aalto University and Department of Mathematical Sciences, Loughborough University., MSP Group, Aalto University
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Biomimetic subcellular structures from phase separation of an aqueous two-phase system
ORAL
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Presenters
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Huanqing Cui
The University of Hong Kong
Authors
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Huanqing Cui
The University of Hong Kong
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Ho Cheung Shum
The University of Hong Kong
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