Congratulations to the research team - A fast and sustainable technique for catalytically degrading organic dyes under flow in the vortex fluidic device – published in ACS Appl. Nano Mater. https://t.co/tFwbtywz6B
Congratulations to the research team – green graphene oxide (GGO) from graphite and aqueous hydrogen peroxide using the vortex fluidic device, with control on the level of oxidation. https://t.co/FvIwUscOUO
Congratulations to Safira Barros and Zoe Gardner from Flinders University - poster prize recipients at the RACI 2022 National Convention in Brisbane earlier this month - Industrial and Material Chemistry Symposia
Congratulations to Thaar and the rest of the team – vortex fluidic continuous flow fabrication of MoS2 scrolls with active edges showing high activity towards electrochemical hydrogen evolution.
https://t.co/uB1KIklinp
Congratulations to Aghil and the rest of the team – polysulfone/graphene oxide ultrafiltration membranes using continuous flow vortex fluidic device micro-mixing. https://t.co/QsdqE0Z7O0
Congratulations to the research team led by Greg Weiss on using the vortex fluidic device in a novel operating mode for accelerating immunoblot processing – down to 5 minutes! https://t.co/VKDgyUdG2E
Unravelling how immiscible liquids behave under shear in the vortex fluidic device - high mass transfer across the phases with mixing at nm dimensions, from >100,000 experiments involving 20 authors!
https://t.co/E9XofS864d
https://t.co/Rd96O3suGh
How do we better protect #artwork and other materials from the damaging elements in the #air?
@CurtinUni’s @DrNadimDarwish and PhD student Soraya Rahpeima reveal how their #invisible barrier breakthrough could do the trick. Read more: https://t.co/h2aMhpfsVD
#CurtinResearch
Latest paper from the research group on 'Shear Stress-Mediated Growth of Cupric Phosphate Nanostructures" published in Crystal Growth & Design - using the remarkable versatile vortex fluidic device.
https://t.co/uE5nh1AYX0
Our recent article in Nanoscale Advances has been highlighted as a Popular Advance! Read the article and see the full collection at https://t.co/yG93UKsyD0.
'High shear spheroidal topological fluid flow induced coating of polystyrene beads with C60 spicules' Made possible by understanding the fluid flow down to submicron dimensions
https://t.co/QSAqRN2HDm
https://t.co/gJDON182vO
Outstanding research team + >100,000 experiments + Eureka moments = establishing ‘Sub-micron moulding topological mass transport regimes in angled vortex fluidic flow’ = diverse VFD applications
https://t.co/sZTS33aHI8