A novel microfluidic mixing strategy was developed and used to prepare polyvinylpyrrolidone (PVP) capped gold nanoparticles (AuNPs). In this process, 1 mM tetrachloroauric acid (HAuCl4) stream containing 1% (w/v) PVP was injected through the inner capillary tube and mixed with 20 mM L-ascorbic acid solution delivered co-currently through the outer coaxial capillary. The reaction mixture was hydrodynamically flow focused by the environmentally friendly oil Miglyol 840 delivered from the opposite side of the outer capillary, which resulted in the generation of reaction droplets in a tapered collection tube. The reactants were rapidly mixed within droplets by internal circulating flows induced by hydrodynamic interactions of fluids inside the ...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
Emulsions formed by mixing reactant streams inside microdroplets are efficient micro-scale reactors ...
A reliable glass capillary microfluidic method was developed for a continuous production of well-con...
Supplementary file information for Continuous synthesis of PVP stabilized biocompatible gold nanopar...
Supplementary file information for Continuous synthesis of PVP stabilized biocompatible gold nanopar...
Production of biocompatible gold nanoparticles for drug delivery using droplet based glass capillary...
Mixing in microfluidic devices as a new strategy for fabrication of nanoparticle
Towards a novel microfluidic device for synthesis of gold nanoparticles for drug deliver
A facile and rapid method for synthesising single crystal gold spherical or platelet (non-spherical)...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
Emulsions formed by mixing reactant streams inside microdroplets are efficient micro-scale reactors ...
A reliable glass capillary microfluidic method was developed for a continuous production of well-con...
Supplementary file information for Continuous synthesis of PVP stabilized biocompatible gold nanopar...
Supplementary file information for Continuous synthesis of PVP stabilized biocompatible gold nanopar...
Production of biocompatible gold nanoparticles for drug delivery using droplet based glass capillary...
Mixing in microfluidic devices as a new strategy for fabrication of nanoparticle
Towards a novel microfluidic device for synthesis of gold nanoparticles for drug deliver
A facile and rapid method for synthesising single crystal gold spherical or platelet (non-spherical)...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
Supplementary files for Continuous synthesis of PVP stabilized biocompatible gold nanoparticles with...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...
A microfluidic reactor was developed to enhance the speed (reaction time <4 min) and control of the ...