International audienceAbstract A remarkable property of cellulose-based materials is that they can absorb huge amounts of water (25% of the dry mass) from ambient vapor, in the form of bound water confined at a nanoscale in the amorphous regions of the cellulose structure. The control of the dynamics of sorption and desorption of bound water is a major stake for the reduction of energy consumption and material or structure damages, but in the absence of direct observations this process is still poorly known. Here we present measurements of bound water transport thanks to Nuclear Magnetic Resonance relaxometry and Magnetic Resonance Imaging measurements. We show that the bound water is transported along the fibers and throughout the network ...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
The cellulosic network of artificially acidified paper has been studied by 2D NMR relaxometry, NMR d...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...
International audienceAbstract A remarkable property of cellulose-based materials is that they can a...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Abstract Interactions of water with cellulose are of both fundamental and technological importance. ...
International audienceMoisture transport and/or storage in clothes plays a major role on the comfort...
Abstract We have in this paper investigated how water sorbs to cellulose. We found that both cellulo...
Water diffusion in cellulose was studied via two-phase Kärger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
The cellulosic network of artificially acidified paper has been studied by 2D NMR relaxometry, NMR d...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...
International audienceAbstract A remarkable property of cellulose-based materials is that they can a...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Mobility of water in cellulose was studied by solid-state 1H and high-resolution 2H NMR as a functio...
Abstract Interactions of water with cellulose are of both fundamental and technological importance. ...
International audienceMoisture transport and/or storage in clothes plays a major role on the comfort...
Abstract We have in this paper investigated how water sorbs to cellulose. We found that both cellulo...
Water diffusion in cellulose was studied via two-phase Kärger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
Water diffusion in cellulose was studied via two-phase Karger model and the propagator method. In ad...
The cellulosic network of artificially acidified paper has been studied by 2D NMR relaxometry, NMR d...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...