Pulsed field gradient NMR (PFG-NMR) spectroscopy has been used to determine the network mesh size in stable hydrogels formed upon addition of Ca2+ to solutions of naphthalene diphenylalanine (2FF). At pH 12, the solutions at 0.55 wt% 2FF comprise worm-like micelles. Addition of Ca2+ results in cross-linking of these micelles. The self-diffusion of dextran guests of nominal 6, 40, 70, 100, 500, 670, 1400 and 2000 kDa, possessing hydrodynamic diameters (2Rh) similar to the expected pore sizes in these systems, was studied both in the precursor micellar solutions and in the hydrogels. The diffusivity of probes with 2Rh >40 nm is restricted to a similar extent in both types of network with diffusion coefficients scaling as ∼Mr−0.5, where Mr...
The diffusion of small molecules through hydrogels is of great importance for many applications. Esp...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
Hydrogels are biocompatible polymeric materials that are becoming increasingly\ud important in biome...
Pulsed field gradient NMR (PFG-NMR) spectroscopy has been used to determine the network mesh size in...
Pulsed field gradient NMR (PFG-NMR) spectroscopy has been used to determine the network mesh size in...
Self-diffusion and mutual diffusion are two different transport mechanisms experimentally characteri...
We use PFG NMR to measure hindered self-diffusion of spherical, monodisperse diffusional nanoprobes ...
Diffusion behavior of particles in hydrogels is important both for the fundamental understanding of ...
We use PFG NMR to measure hindered self-diffusion of spherical, monodisperse diffusional nanoprobes ...
To gain insight into the fundamental processes determining the motion of macromolecules in polymeric...
Stimuli-responsive polymer networks like microgels and hydrogels possess a variety of properties tha...
Stimuli-responsive polymer networks like microgels and hydrogels possess a variety of properties tha...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
The importance of Interpenetrating Polymer Networks (IPNs) in biomedical and pharmaceutical fields i...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
The diffusion of small molecules through hydrogels is of great importance for many applications. Esp...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
Hydrogels are biocompatible polymeric materials that are becoming increasingly\ud important in biome...
Pulsed field gradient NMR (PFG-NMR) spectroscopy has been used to determine the network mesh size in...
Pulsed field gradient NMR (PFG-NMR) spectroscopy has been used to determine the network mesh size in...
Self-diffusion and mutual diffusion are two different transport mechanisms experimentally characteri...
We use PFG NMR to measure hindered self-diffusion of spherical, monodisperse diffusional nanoprobes ...
Diffusion behavior of particles in hydrogels is important both for the fundamental understanding of ...
We use PFG NMR to measure hindered self-diffusion of spherical, monodisperse diffusional nanoprobes ...
To gain insight into the fundamental processes determining the motion of macromolecules in polymeric...
Stimuli-responsive polymer networks like microgels and hydrogels possess a variety of properties tha...
Stimuli-responsive polymer networks like microgels and hydrogels possess a variety of properties tha...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
The importance of Interpenetrating Polymer Networks (IPNs) in biomedical and pharmaceutical fields i...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
The diffusion of small molecules through hydrogels is of great importance for many applications. Esp...
Hydrogels are biocompatible polymeric materials that are becoming increasingly important in biomedic...
Hydrogels are biocompatible polymeric materials that are becoming increasingly\ud important in biome...