Diffusion Fundamentals (E-Journal)
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    Diffusion and self-avoiding walks on percolation clusters

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    Propagation of solid-liquid interfaces under disordered confinements

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    Dependence of the relaxation time T2 on a fluid flow velocity in a porous media

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    7Li ion diffusion in isotope-diluted glassy Li2Si3O7 - the generation of pure spin-3/2 spin-alignment NMR echoes

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    Quantification of MRI sensitivity for mono-disperse microbubbles to measure subatmospheric fluid pressure changes

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    It would be very beneficial to perform MRI of fluids and sense the fluid pressure changes. Our aim is to demonstrate a contrast agent capable of MR sensitivity to sub-atmospheric pressure changes. To achieve this, monodisperse microbubbles were prepared with an optically measured mean radius of 1.4 ± 0.8 μm. A repeated pressure change cycle was applied on the microbubble contrast agent, until it produced an MR signal change solely due to the bubble radius change. The bubbles’ contribution to the relaxation rate before and after applying sub-atmospheric pressure changes was estimated and its echo time dependence modelled, so as to inform the mean radius change. The periodic subatmospheric pressure change was further applied until the MR signal change was only due to the bubble radius change. An excellent MR sensitivity of 28 % bar-1 is demonstrated, bubble radii of 2.4 and 1.8 μm are numerically estimated before and after the application of pressure, and the simulations are further used to estimate the optimum bubble radius maximising the MR sensitivity to a small change in radius

    Water dynamics of LiCl solutions confined in nanopores

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    The self-diffusion of water in aqueous solutions of lithium chloride in bulk solutions and in these solutions confined to porous glass monoliths with bimodal pore structure has been studied by PFG NMR. The concentration dependent data for the bulk solutions are analyzed by the description of Sevrugin et al. [1], which yields information about the water dynamics within the ion’s hydration shell. For an application to confined diffusion, this description is extended by introducing a tortuosity factor. Whereas in the larger macropores no influence on the water dynamics within the hydration shell is detected, in the smaller mesopores, a significant increase of the mobility of the hydrating water molecules is observed

    The appeal of single-molecule and single-cell studies

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    Diffusion and organization in driven particles systems

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    Single molecule study of heterogeneous dynamics in polymers

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    Diffusive protofilament switching of kinesin-8 investigated with optical tweezers

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    Diffusion Fundamentals (E-Journal)
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