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Disordered Micelle Regime in a Conformationally Asymmetric Diblock Copolymer Melt
Guo Kang Cheong,
Kevin D. Dorfman
Chemical Engineering and Materials Science
Materials Research Science & Engineering Center
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Dive into the research topics of 'Disordered Micelle Regime in a Conformationally Asymmetric Diblock Copolymer Melt'. Together they form a unique fingerprint.
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Physics
Regimes
100%
Micelle
100%
Particle
66%
Crystal Structure
66%
Molecular Dynamics
50%
Self Consistent Field
33%
Field Theory
33%
Asymmetry
33%
Polymerization
33%
Volume
16%
Simulation
16%
Increasing
16%
Monte Carlo
16%
Position (Location)
16%
Ratios
16%
Laves Phase
16%
Chemistry
Block Copolymer
100%
Micelle
100%
Asymmetry
100%
Order Disorder Transition
66%
Number
50%
Polymerization Reaction
33%
Length
33%
Body-Centered Cubic Crystal System
33%
Field Theory
33%
Simulation
16%
Segregation
16%
Volume
16%
Particle Density
16%
Laves Phase
16%
Biochemistry, Genetics and Molecular Biology
Micelle
100%
Density
50%
Self Concept
33%
Polymerization
33%
Length
33%
Processing
16%
Volume
16%
Strength
16%