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Responsive Metal-Organic Framework Materials

Metal-organic frameworks (MOFs) are a major new family of material that are attracting enormous interest due to their designable structures and advanced capabilities.  This pro more...

Supervisor(s): Kepert, Cameron (Professor)

Waveguide-coupled 2D materials for spontaneous parametric down conversion (SPDC) generation and collection

This project aims to generate correlated photons directly on-chip from 2D materials. more...

Supervisor(s): Palomba, Stefano (Associate Professor)

Encapsulated Next generation perovskite solar cells

This project will build the next generation of photovoltaic solar cells for addressing the air-conditioning load in buildings by converting their facades to energy harvesting surfac more...

Supervisor(s): McKenzie, David (Professor)

Ionic Molecular Hybrid Liquids

An opportunity is available for a PhD scholar to undertake research studies into the structure and properties of nano structured ionic-molecular hybrid liquids. The aim of the resea more...

Supervisor(s): Warr, Gregory (Professor)

Advanced organic electronics

This project aims to identify design rules for next-generation organic electronics, especially organic solar cells. It will use both computational simulations and experimental work more...

Supervisor(s): Kassal, Ivan (Dr)

Accelerating perovskite solar cells for the real world

While perovskite solar cells have been the fastest advancing PV technology, what else is needed to accelerate the deployment of this technology in the real world? Why do demonstrate more...

Supervisor(s): Ho-Baillie, Anita (Professor)

The power of perovskites

Metal halide perovskites have attracted global research attention in the last decade. While their application for solar is promising being the fastest advancing PV technology with m more...

Supervisor(s): Ho-Baillie, Anita (Professor)

Multiscale modelling and simulation of solid-fluid interactions in porous media

The aim of this project is to develop computational tools for modelling the coupled fluid transport-solid deformation behaviour in porous media at micro-, meso- and macro-scales. more...

Supervisor(s): Shen, Luming (Associate Professor)

Numerical simulation of hydraulic fracturing

The aim of this project is to develop a 3D hydraulic fracturing simulator that couples fluid-proppant-rock interactions within the framework of material point method (MPM). more...

Supervisor(s): Shen, Luming (Associate Professor)

Development of Shale Gas Reservoir Simulator

The aim of this project is to develop a triple porosity rock model coupled with the transport of gas and liquid phases for a more accurate evaluation of the shale gas recovery. more...

Supervisor(s): Shen, Luming (Associate Professor)