Block Copolymer Thin Films: Directed Self-Assembly
FOCUS · V33 ·
Presentations
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Log-rolling block copolymers cylinders
ORAL
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Authors
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So Youn Kim
- Ulsan National Institute of Science and Technology
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Ye Chan Kim
- Ulsan National Institute of Science and Technology
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Dong Hyup Kim
- Ulsan National Institute of Science and Technology
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Na Kyung Kwon
- Ulsan National Institute of Science and Technology
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Richard A. Register
- Princeton University
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Laser Zone Annealing - Accelerated Route to Self-Assembled Nanostructures
ORAL
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Authors
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Pawel Majewski
- Brookhaven National Laboratory
- Brookhaven Natl Lab
- Brookhaven National Lab
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Kevin Yager
- Center for Functional Nanomaterials, Brookhaven National Laboratory
- Brookhaven National Laboratory
- Brookhaven Natl Lab
- Brookhaven National Lab
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Atikur Rahman
- Brookhaven National Laboratory
- Brookhaven Natl Lab
- Brookhaven National Lab
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Charles Black
- Brookhaven National Laboratory
- Brookhaven Natl Lab
- Brookhaven National Lab
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Block Copolymer Directed Self-Assembly Approaches for Doping Planar and Non-Planar Semiconductors.
ORAL
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Authors
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Bhooshan Popere
- Univ of California - Santa Barbara
- University of California, Santa Barbara
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Boris Russ
- Univ of California - Berkeley
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Andrew Heitsch
- The Dow Chemical Company
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Peter Trefonas
- Dow Electronic Materials
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Rachel Segalman
- UC Santa Barbara
- Univ of California - Santa Barbara
- University of California, Santa Barbara
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Directed Nanoscale Assembly of Graphene Based Materials
COFFEE_KLATCH · Invited
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Authors
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Sang Ouk Kim
- National Creative Research Initiative Center for Multi-Dimensional Directed Nanoscale Assembly, Department of Materials Science & Engineering, KAIST
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Direct Immersion Solvent Annealing of Nano-filled Block Copolymer Films
ORAL
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Authors
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Melanie Longanecker
- Univ of Akron
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Arvind Modi
- Univ of Akron
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Guangcui Yuan
- National Institute of Standards and Technology
- Center for Neutron Research, NIST
- NIST - Natl Inst of Stds & Tech
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Sushil Satija
- National Institute of Standards and Technology
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Joona Bang
- Korea University
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Alamgir Karim
- Univ of Akron
- University of Akron
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Effects of ultra-fast solvent evaporation in solvent vapor annealed cylinder-forming block polymer thin films
ORAL
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Authors
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A. Baruth
- Creighton Univ, Omaha, NE
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G. Nelson
- Creighton Univ, Omaha, NE
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C. Drapes
- Creighton Univ, Omaha, NE
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J. Wong
- Creighton Univ, Omaha, NE
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M. Grant
- Creighton Univ, Omaha, NE
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Fabrication of nanoporous block copolymer films using highly selective solvents and non-solvent extraction
ORAL
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Authors
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Changhuai Ye
- The University of Akron
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Bryan Vogt
- University of Akron
- The University of Akron
- Univ of Akron
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Tracking Solvent Distribution in Block Polymer Thin Films with In Situ Solvent Vapor Annealing during Neutron Scattering
ORAL
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Authors
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Cameron Shelton
- University of Delaware
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Ronald Jones
- National Institute of Standards and Technology
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Joseph Dura
- National Institute of Standards and Technology
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Thomas Epps
- University of Delaware
- Univ of Delaware
- University of Delaware, Dept. of Chemical and Biomolecular Engineering, Dept. of Materials Science and Engineering
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Continuous and patterned deposition of functional block copolymer thin films using electrospray
ORAL
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Authors
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Kristof Toth
- Yale University
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Hanqiong Hu
- Yale University
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Myungwoong Kim
- Inha University
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Padma Gopalan
- University of Wisconsin
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Michael Loewenberg
- Yale University
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Chinedum Osuji
- Yale University
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Formation of Lamellar Heterolattices in Block Copolymer Thin Films by Sequential Electrospray Deposition
ORAL
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Authors
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Youngwoo Choo
- Yale University
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Hanqiong Hu
- Yale University
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Kristof Toth
- Yale University
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Chinedum Osuji
- Yale University
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Hierarchical assembled nanostructures of hydrogen-bonded supramolecular block copolymer thin films.
ORAL
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Authors
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Xiaofang Chen
- Soochow University
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Yongchen Cai
- Soochow University
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ABSTRACT WITHDRAWN
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Crystallization induced block copolymer assembly at curved liquid-liquid interface
ORAL
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Authors
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Hao Qi
- Drexel University
- None
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Tian Zhou
- Drexel University
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Hao Zhou
- Drexel University
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Christopher Li
- Drexel University
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