Publication | Closed Access
Crowded, Confined, and Frustrated: Dynamics of Molecules Tethered to Nanoparticles
64
Citations
28
References
2012
Year
NanoparticlesMolecules TetheredEngineeringNanostructured PolymerChemistrySoft MatterMolecular DynamicsPolymersEntangled SystemsNanoscale ChemistryTopological ConstraintsPolymer MoleculesPolymer ChemistryBiophysicsPhysicsNanotechnologyNanofluidicsPolymer MeltPolymer SolutionNanomaterialsNatural SciencesSelf-assemblyPolymer ScienceApplied PhysicsNanoreactorPolymer Modeling
Above a critical chemistry-dependent molecular weight, all polymer molecules entangle and, as a result, exhibit slow dynamics, enhanced viscosity, and elasticity. Herein we report on the dynamics of low molecular weight polymers tethered to nanoparticles and find that even conventionally unentangled chains manifest dynamical features similar to entangled, long-chain molecules. Our findings are shown to imply that crowding and confinement of polymers on particles produce topological constraints analogous to those in entangled systems.
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