• Equipment

     

    Sijbren Otto

    • Electron Microscopy facility
    • Peptide synthesizer
    • Rheometer
    • UPLC-ESI/CI-TOF
    • UPLC
    • HPLC-ESI/CI-Orbitrap
    • HPLC
    • Preparative HPLC
    • Isothermal Titration Calorimetry (ITC)

     

    Nicolas Giuseppone

    • Electron microscopy facility

    Polymer Characterization

    • Size Exclusion Chromatography (SEC) with multidetection, in organic and aqueous solvents
    • Differential Scanning Calorimetry (DSC)
    • Thermogravimetry
    • Viscometry (capillary and Couette)
    • Static light scattering
    • Differential refractometry
    • Field Flow Fractionation (Flow-FFF or AF4)

    The service is also more specifically equipped with the most advanced techniques for determination of the physicochemical parameters characteristic of polymers:

    • molar mass distribution
    • average molar masses Mw and Mn
    • radius of gyration
    • refractive index increment dn/dc
    • kinematic viscosity
    • intrinsic viscosity
    • thermal transitions (melting point, Tg)


    Kay Severin

    • Isothermal Titration Calorimetry (ITC)

     

    Rein Ulijn

    • Atomic Force Microscopy (AFM)
    • Scanning and Transmission Electron Microscopy (SEM and TEM)
    • Rheometer
    • Fluorescence Spectroscopy
    • Circular Dichroism (CD)
    • Mass Spectrometry
    • HPLC and LCMS
    • Single Crystal X-ray Diffraction
    • Static and Dynamic Light Scattering (SLS and DLS)
    • Peptide Synthesizer

     

    Marc-André Delsuc

    • Circular Dichroism spectrometer - Jasco
    • 700MHz Bruker NMR, equipped with 1H-13C-15N cryo probe
    • 600MHz Bruker NMR, equipped with 1H-13C-15N cryo probe
    • 500MHz Bruker NMR, equipped with generic broadband probe
    • 400MHz-Bruker NMR, equipped with generic solid-state probe
    • 400MHz-Bruker NMR, equipped with  HR-MAS 1H-13C probe and generic broadband
      probe

     

    Ludovic Jullien

    • Capillary electrophoresis with light-induced fluorescence (for separative analyses at extremely low concentrations)

     

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