Systems comprised of immiscible liquids held in non-equilibrium shapes by the interfacial assembly and jamming of nanoparticle-polymer surfactants have significant potential to advance catalysis, chemical separations, energy storage and conversion. Spatially directing functionality within them and coupling processes in both phases remains a challenge. Here, we exploit nanoclay-polymer surfactant assemblies at an oil-water interface to produce a semi-permeable membrane between the liquids, and from them all-liquid fluidic devices with bespoke properties. Flow channels are fabricated using micropatterned 2D substrates and liquid-in-liquid 3D printing. The anionic walls of the device can be functionalized with cationic small molecules, enzymes...
Surface modification of microchannels with a photo-reactive self-assembled monolayer (SAM) allows fo...
The miniaturization of synthesis, analysis and screening experiments is an important step towards mo...
We here present a two-dimensional (2D) micro/nano-fluidic technique where reactant-doped liquid−crys...
Systems comprised of immiscible liquids held in non-equilibrium shapes by the interfacial assembly a...
Nanoparticle surfactants (NPSs) assembled at the oil-water interface can significantly lower the int...
Liquid-fluid interfaces provide a platform both for structuring liquids into complex shapes and asse...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
The self-assembly of nanoscale materials at the liquid-liquid interface allows for fabrication of th...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
Fluid interfaces, including gas-liquid and liquid-liquid interfaces, are ubiquitous in nature and wi...
Using host-guest molecular recognition at the oil-water interface, a new type of photoresponsive nan...
All-in-liquid printing promises applications from energy storage to drug delivery and tissue enginee...
We show a novel microfluidic fabrication technique to shape liquid containing various materials into...
Surface modification of microchannels with a photo-reactive self-assembled monolayer (SAM) allows fo...
The miniaturization of synthesis, analysis and screening experiments is an important step towards mo...
We here present a two-dimensional (2D) micro/nano-fluidic technique where reactant-doped liquid−crys...
Systems comprised of immiscible liquids held in non-equilibrium shapes by the interfacial assembly a...
Nanoparticle surfactants (NPSs) assembled at the oil-water interface can significantly lower the int...
Liquid-fluid interfaces provide a platform both for structuring liquids into complex shapes and asse...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
The self-assembly of nanoscale materials at the liquid-liquid interface allows for fabrication of th...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
Fluid interfaces, including gas-liquid and liquid-liquid interfaces, are ubiquitous in nature and wi...
Using host-guest molecular recognition at the oil-water interface, a new type of photoresponsive nan...
All-in-liquid printing promises applications from energy storage to drug delivery and tissue enginee...
We show a novel microfluidic fabrication technique to shape liquid containing various materials into...
Surface modification of microchannels with a photo-reactive self-assembled monolayer (SAM) allows fo...
The miniaturization of synthesis, analysis and screening experiments is an important step towards mo...
We here present a two-dimensional (2D) micro/nano-fluidic technique where reactant-doped liquid−crys...