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Development of smart materials impedance graded composite materials in blast and impact mitigation

The purpose of this research is to develop novel composite materials and structural systems which have wide range of applications. more...

Supervisor(s): Mohotti, Damith (Dr)

Blast and impact loadings on structures

The purpose of this research is to identify improve the current design approaches and develop innovative structural systems to mitigate damage caused by extreme loadings such as bla more...

Supervisor(s): Mohotti, Damith (Dr)

Towards a social networks model for understanding teaching and learning in the CPC

In this project, we are interested in understanding the role of social networks (both formal and informal) in learning. Theories in social learning suggest that students learn more more...

Supervisor(s): Chung, Kenneth (Dr)

Photoresponsive Soft Matter

Molecules that respond to light by isomerization, dissociation, or polymerization may be incorporated into surfactant self-assembly structures, thereby creating novel forms of matte more...

Supervisor(s): Warr, Gregory (Professor)

2D materials – effect of strain on chemical reactivity; and the physics of borophene

Two projects: (i) To study the catalytic properties of 2D structures for the Oxygen Reduction Reaction (ORR) and determine how the catalytic properties are influenced by applying st more...

Supervisor(s): Stampfl, Catherine (Professor)

Molecular insights into a novel mammalian oxygen-sensing pathway

Oxygen (O2) is a vital biological resource most prominently known for its role as the final electron acceptor in aerobic respiration and, as such, adequate molecular mechanisms are more...

Supervisor(s): White, Mark (Dr), Mackay, Joel (Professor)

Determining Value and Impact of the CPC through stakeholder analysis

The Charles Perkin Centre (CPC) officially launched in 2014 is the central hub and flagship of Sydney University to provide collaboration for interdisciplinary research amongst var more...

Supervisor(s): Chung, Kenneth (Dr)

Light-harvesting complexes: adaptation and efficiency

Different light-harvesting strategy and flexible regulatory mechanism for maximising light-energy capture and their potential application for increasing the biomass and crop product more...

Supervisor(s): Chen, Min (Professor)

The HAMLET molecular species with anticancer properties

We are interested to determine how the anti-cancer properties of this family of molecules can be translated into cancer treatment. We believe there may be a delivery system which n more...

Supervisor(s): Church, W Bret (Dr)

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)