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Structural and Magnetic Properties of 4d Oxides

How high can magnetic interactions go?  Using second and third row transition metal oxides we are targeting a class of perovskite materials that could potentially have the high more...

Supervisor(s): Kennedy, Brendan (Professor)

Magnetic resonance electrical impedance tomography

MREIT is a new medical imaging method that allows the electrical conductivity of tissue to be directly measured in the MR scanner. It has high potential for implant design, monitors more...

Supervisor(s): McEwan, Alistair (Professor)

Graphene: a journey of appreciation and exploration via computational simulations

This project aims to study several graphene-based nanostructures including nanoribbon, nanodots and nanoantidots and their optical, electrical and magnetic properties by first princ more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

Radical MOFs and POPs: from microporous conductors to CO(2) capture materials

This project involves the design, synthesis and characterisation of metal-organic frameworks (MOFs) and porous organic polymers (POPs) based on redox-active ligands and metal cluste more...

Supervisor(s): D'Alessandro, Deanna (Associate Professor)

Quantum transport in molecule/carbon-based nanostructures for new molecular electronic devices

Various projects available in the field molecular electronics and sensors. Large scale ab initio calculations will be used to investigate and predict novel structures and systems. A more...

Supervisor(s): Stampfl, Catherine (Professor)

Measures to Increase Trust and Reliability of Robotic Systems in the Presence of Adversity

Development of low-profile sensing techniques for stealthy robotic platforms in unstructured environments. This includes minimising electromagnetic and acoustic signatures while per more...

Supervisor(s): Johnson, David (Dr)

Nanostructured Electrolytes and Ionogels

Ionic liquids (ILs) are salts that melt below or near room temperature due to frustration of the coulomb forces that stabilise the crystals, and can act as non-volatile solvents for more...

Supervisor(s): Warr, Gregory (Professor)

Mechanism and control of diamond and graphene-based nanostructures using direct electric-field and laser excitation

To investigate the sculpting of carbon-based structures through controlled electric field and/or laser excitation, through first-principles based calculations. more...

Supervisor(s): Stampfl, Catherine (Professor)

Customising the acidity of novel nano-catalysts for desired catalytic reactions

To investigate through first principles calculations, the fundamental physics and chemistry of novel solid acid nano-catalysts with the overall goal of understanding and predicting more...

Supervisor(s): Stampfl, Catherine (Professor)

Atomic structure, assembly, interactions and engineering of functional amyloids

This project aims to engineer hydrophobins for a range of biotechnological applications from coating of medical implants to formulation of drug delivery vehicles. The work includes more...

Supervisor(s): Kwan, Ann (Dr)