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Dipolar and chain-linking effects on the rheology of grafted chains in a nanopore under shear at different grafting densities
Morten Jensen,
Ole G. Mouritsen
, Günther H. Peters
*
*
Corresponding author for this work
Department of Neuroscience
Department of Chemistry
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Dive into the research topics of 'Dipolar and chain-linking effects on the rheology of grafted chains in a nanopore under shear at different grafting densities'. Together they form a unique fingerprint.
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Mathematics
Nanopore
100%
Rheology
78%
Linking
60%
Chain
42%
Dipole
34%
Interaction
20%
Moment
19%
Non-equilibrium Molecular Dynamics
18%
Lennard-Jones Potential
15%
Molecular Dynamics Simulation
14%
Thermostat
14%
Density Profile
14%
Harmonic Potential
13%
Tilt
13%
Coplanar
12%
Friction
9%
Molecules
9%
Heat
9%
Vibration
8%
Flexibility
8%
Viscosity
8%
Tail
8%
Harmonic
7%
Angle
7%
Gradient
7%
Model
6%
Physics & Astronomy
rheology
59%
shear
38%
dipole moments
25%
beads
18%
harmonics
13%
thermostats
12%
Lennard-Jones potential
11%
interactions
11%
lattice vibrations
10%
shearing
9%
flexibility
8%
friction
8%
viscosity
6%
molecular dynamics
6%
heat
6%
gradients
6%
profiles
5%
molecules
5%
simulation
3%