Diffusion Fundamentals (E-Journal)
Not a member yet
    1234 research outputs found

    Mass-transfer of binary mixtures in DDR single crystals

    Get PDF

    Simulation of diffusion in a crowded environment: the application of the Dynamic Lattice Liquid Model (DLL)

    Get PDF

    Dynamics of single DNA molecules in spatial confinement

    Get PDF

    Water permeation across lipid bilayers studied by pulsed field gradient NMR

    Get PDF

    MRI study of hydrophilic xanthan tablets with incorporated model drug

    Get PDF
    Magnetic resonance imaging was used to study swelling dynamics and hydrogel formation of xanthan tablets with or without Pentoxifylline drug in water and HCl pH 1.2 media at two different ionic strengths. Significant changes were observed only in the erosion front positions leading to different hydrogel thicknesses. The impact of the drug on the hydrogel thickness was found to be dependent on the medium conditions at high enough drug amount. The drug does not change the hydrogel thickness in water medium, whereas in acid medium the presence of the drug results in thinner hydrogel. The increased ionic strength in water medium also leads to formation of the thinner hydrogel layer in tablets with high enough drug content, while the effect of NaCl in HCl pH 1.2 medium is very small

    Cytoskeletal pinning prevents large-scale phase separation in model membranes

    Get PDF

    On the nature of adsorption sites for CO2 in MOF Zn2(bdc)2dabco

    Get PDF

    Exploring diffusion and reaction in nanoporous catalysts by IR micro-imaging

    Get PDF

    Modelling the oxygen diffusion profile in St 707 non evaporable getter material

    Get PDF

    1,189

    full texts

    1,234

    metadata records
    Updated in last 30 days.
    Diffusion Fundamentals (E-Journal)
    Access Repository Dashboard
    Do you manage Open Research Online? Become a CORE Member to access insider analytics, issue reports and manage access to outputs from your repository in the CORE Repository Dashboard! 👇