Diffusion is an essential means of mass transport in porous materials such as hydrogels, which are appealing in various biomedical applications. Herein, we investigate the diffusive motion of nanoparticles (NPs) in porous hydrogels to provide a microscopic view of confined diffusion. Based on the mean square displacement from particle tracking experiments, we elucidate the anomalous diffusion dynamics of the embedded NPs and reveal the heterogeneous pore structures in hydrogels. The results demonstrate that diffusive NPs can intermittently escape from single pores through void connective pathways and exhibit non-Gaussian displacement probability distribution. We simulate this scenario using the Monte Carlo method and clarify the existence o...
We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topologic...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
The diffusion of colloids in complex biological hydrogels is regulated by a broad range of factors i...
Diffusion is an essential means of mass transport in porous materials such as hydrogels, which are a...
The inherent pore-scale heterogeneity of many natural and synthetic porous materials can make it dif...
Recently, nanoparticle dispersions have been explored to improve the exploration and production of s...
The understanding of particle transport mechanisms in biological and synthetic hydrogels is crucial ...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
Understanding nanoparticle (NP) diffusion in a hydrogel matrix is important to the development of NP...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
Hindered mobility of nanoparticles in complex media is ubiquitous in drug delivery, in processing of...
All biogels are heterogeneous, consisting of functional groups with different biophysical properties...
International audienceThe transport of fluids at the nanoscale has achieved major breakthroughs over...
Using stochastic simulations, we study the influence of spatial disorder on the diffusion of a singl...
We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topologic...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
The diffusion of colloids in complex biological hydrogels is regulated by a broad range of factors i...
Diffusion is an essential means of mass transport in porous materials such as hydrogels, which are a...
The inherent pore-scale heterogeneity of many natural and synthetic porous materials can make it dif...
Recently, nanoparticle dispersions have been explored to improve the exploration and production of s...
The understanding of particle transport mechanisms in biological and synthetic hydrogels is crucial ...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
Understanding nanoparticle (NP) diffusion in a hydrogel matrix is important to the development of NP...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
Hindered mobility of nanoparticles in complex media is ubiquitous in drug delivery, in processing of...
All biogels are heterogeneous, consisting of functional groups with different biophysical properties...
International audienceThe transport of fluids at the nanoscale has achieved major breakthroughs over...
Using stochastic simulations, we study the influence of spatial disorder on the diffusion of a singl...
We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topologic...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
The diffusion of colloids in complex biological hydrogels is regulated by a broad range of factors i...