We report a microfluidic approach to perform small angle neutron scattering (SANS) measurements of contrast variation and matching, extensively employed in soft and biological matter research. We integrate a low scattering background microfluidic mixer and serpentine channel in a SANS beamline to yield a single phase, continuous flow, reconfigurable liquid cell. By contrast with conventional, sequential measurements of discrete (typically 4–6) solutions of varying isotopic solvent composition, our approach continually varies solution composition during SANS acquisition. We experimentally and computationally determine the effects of flow dispersion and neutron beam overillumination of microchannels in terms of the composition resolution and ...
In this paper we report measurements of the form factor and the structure factor of a sterically sta...
We introduce a new method for real-time studies of membrane scaling and biofouling on thin film comp...
International audienceSmall angle neutron scattering (SANS) is a powerful technique for investigatin...
The coupling of droplet microfluidics and Small Angle Neutron Scattering (SANS) is demonstrated with...
This thesis reports the coupling of microfluidics and small angle neutron scattering (SANS) for the ...
This study investigated the use of solvent contrast (H2O/D2O ratio) as a means to optimize the ultra...
Small Angle Neutron Scattering (SANS) is a technique that enables to probe the 3-D structure of mate...
A comparative examination is presented of materials and approaches for the fabrication of microfluid...
This paper presents the use of a stopped-flow small-angle neutron-scattering (SANS) sample environme...
A new sample environment for the observation of ongoing chemical reactions is introduced for small-a...
The determination of in situ structural information of soft matter under flow is challenging, as it ...
Recent improvements in beam-line accessibility and technology have led to small-angle neutron scatte...
The behavior of microgels and other soft and compressible colloidal particles depends on particle co...
The amount of water in therapeutic nanoparticles (NPs) is of great importance to the pharmaceutical ...
Small angle neutron scattering (SANS) is a powerful technique for investigating association states a...
In this paper we report measurements of the form factor and the structure factor of a sterically sta...
We introduce a new method for real-time studies of membrane scaling and biofouling on thin film comp...
International audienceSmall angle neutron scattering (SANS) is a powerful technique for investigatin...
The coupling of droplet microfluidics and Small Angle Neutron Scattering (SANS) is demonstrated with...
This thesis reports the coupling of microfluidics and small angle neutron scattering (SANS) for the ...
This study investigated the use of solvent contrast (H2O/D2O ratio) as a means to optimize the ultra...
Small Angle Neutron Scattering (SANS) is a technique that enables to probe the 3-D structure of mate...
A comparative examination is presented of materials and approaches for the fabrication of microfluid...
This paper presents the use of a stopped-flow small-angle neutron-scattering (SANS) sample environme...
A new sample environment for the observation of ongoing chemical reactions is introduced for small-a...
The determination of in situ structural information of soft matter under flow is challenging, as it ...
Recent improvements in beam-line accessibility and technology have led to small-angle neutron scatte...
The behavior of microgels and other soft and compressible colloidal particles depends on particle co...
The amount of water in therapeutic nanoparticles (NPs) is of great importance to the pharmaceutical ...
Small angle neutron scattering (SANS) is a powerful technique for investigating association states a...
In this paper we report measurements of the form factor and the structure factor of a sterically sta...
We introduce a new method for real-time studies of membrane scaling and biofouling on thin film comp...
International audienceSmall angle neutron scattering (SANS) is a powerful technique for investigatin...