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Identical Water Dynamics in Acrylamide Hydrogels, Polymers, and Monomers in Solution: Ultrafast IR Spectroscopy and Molecular Dynamics Simulations

Sean A. Roget, Zeke A. Piskulich, Ward H. Thompson, M. D. Fayer

2021Journal of the American Chemical Society52 citationsDOIOpen Access PDF

Abstract

O and molecular dynamics simulations. The amide moiety of the monomer/polymers interacts strongly with water through hydrogen bonding (H-bonding). The FT-IR spectra of the three systems indicate that the range of H-bond strengths is relatively unchanged from bulk water. Vibrational population relaxation measurements show that the amide/water H-bonds are somewhat weaker but fall within the range of water/water H-bond strengths. A previous study of water dynamics in PAAm-HG suggested that the slowing observed was due to increasing confinement with concentration. Here, for the same concentrations of the amide moiety, the experimental results demonstrate that the reorientational dynamics (infrared pump-probe experiments) and structural dynamics (two-dimensional infrared spectroscopy) are identical in the three acrylamide systems studied. Molecular dynamics simulations of the water orientational relaxation in aqueous solutions of the acrylamide monomer, trimer, and pentamer are in good agreement with the experimental results and are essentially chain length independent. The simulations show that there is a slower, low-amplitude (<7%) decay component not accessible by the experiments. The simulations examine the dynamics and structure of water H-bonded to acrylamide, in the first solvent shell, and beyond for acrylamide monomers and short chains. The experiments and simulations show that the slowing of water dynamics in PAAm-HG is not caused by confinement in the polymer network but rather by interactions with individual acrylamide moieties.

Topics & Concepts

ChemistrySelf-healing hydrogelsAcrylamideMonomerPolymerUltrashort pulseDynamics (music)SpectroscopyMolecular dynamicsPolymer chemistryChemical engineeringInfrared spectroscopyChemical physicsPhotochemistryComputational chemistryOrganic chemistryOpticsPhysicsQuantum mechanicsAcousticsLaserEngineeringSpectroscopy and Quantum Chemical StudiesThermodynamic properties of mixturesMicrofluidic and Capillary Electrophoresis Applications