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Jülich Centre for Neutron Science (JCNS)
Neutron Scattering and Soft Matter (JCNS-1)
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Functional Polymer Materials
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Self-Healing Elastomers
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Bio-Membrane Translocating Polymers
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Ring Polymers
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Functional Polymer Nanocomposites
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Polymer electrolytes
Proteins and Lipids
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3D-scanning SAXS
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Biological Membranes
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Liquid-Liquid Phase Separation in biological materials
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Intrinsically disordered proteins (IDP) and unfolded proteins
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Functional Collective Dynamics of Domains
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Protonation states of proteins
Soft Colloids
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Soft Colloids
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Molecular Exchange Kinetics
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Interactions, Phase Behaviour and Dynamics
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Soft Colloids Quasicrystals
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Alternating Amphiphilic Copolymers in Water
Nanomaterials
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Nanoparticles
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Nanocomposites
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2D/3D-Nanostructures
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One component nanocomposites (OCNC)
Method and Device Development
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Shear cell
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Microfluidics
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Deuteration
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SAXS-Tensor-Tomography
Ion conduction
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Proteins and Lipids
Soft Colloids
Functional Polymer Materials
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Deuteration Service
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Dielectric Spectroscopy
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NMR
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Polymer Synthesis and Characterization
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Rheometry equipment
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SAXS
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Light Scattering (SLS/DLS)
Neutron methods
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Neutron small angle scattering
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Neutron spin echo spectroscopy
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Neutron back scattering spectroscopy
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Neutron reflectometry
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Other neutron techniques
Complementary Methods
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Methods for the isolation of proteins and characterisation of sustainable food colloids
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X-ray small angle scattering
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TEM
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NMR Diffusometry
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Rheology
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Rheo-IR measurements
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Dielectric spectroscopy
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Dynamic light scattering
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Differential Scanning Calorimetry
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Methods for polymer synthesis
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Methods used in protein characterization
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Helmholtz Nanoelectronic Facility (HNF)
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2022
2022
How can water be cleaned more effectively?
Last Modified: 19.05.2022