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Green Chemistry - Biocatalysis For Production Of High-Value Chemicals

The ultimate aim of biocatalysis research is to replace the petrochemical industry with clean and green microbial reactions using renewable and non-toxic feedstocks. But how exactly more...

Supervisor(s): Coleman, Nicholas (Associate Professor), Rutledge, Peter (Professor)

Modelling plasma surface functionalisation of additively manufactured, porous, prosthetic implants

This project will develop multiphysics models of plasma surface treatment to enable the creation of prosthetic implants with controllable surface properties and long-term biostabili more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling plasma synthesis of nanoparticles for non-invasive diagnosis and targeted treatment of disease

This project will develop multiphysics models of a low temperature capacitively coupled plasma reactor to engineer functionalised nanoparticles for biomedical applications.This proj more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling atmospheric plasma processes for biofunctionalization in additive manufacturing

This project will develop multiphysics models of atmospheric pressure plasma systems to engineer interfaces and biofunctionalised scaffolds in 3D bioprinting.  The Applied Phys more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Using computer simulations to design better printable solar cells

The ability to print efficient, stable and cheap solar cells near ambient conditions would revolutionise our transition to renewable energy.  Metal halide perovskites have more...

Supervisor(s): Widmer-Cooper, Asaph (Dr)

Deep-sea sediments and paleoclimate

Deep-sea sediments record changes in climate, paleogeography, surface environments and biogeochemical cycles through geological time. In this project ocean drilling data will be use more...

Supervisor(s): Dutkiewicz, Adriana (Dr)

Developing new antibiotics by targeting specific molecular interactions in bacteria

This project focuses on developing a new class of antibiotics by targeting specific molecular interactions in bacteria using a multi-disciplinary fragment-based drug design approach more...

Supervisor(s): Kwan, Ann (Dr)

Using metabolomics and other omics to guide new cancer therapies

This project will investigate cellular status and signaling in novel cancer therapies, especially new irradiation schemes in radiotherapy using metabolomics, transcriptomics and pro more...

Supervisor(s): Kwan, Ann (Dr), McKenzie, David (Professor)

Uncovering the source of CO2 that’s respired when dry soil is rewet

Soil respiration is one of the largest components of the global C cycle, but also one of the hardest to model. A key aspect of this difficulty is that we do not have a good mechanis more...

Supervisor(s): Warren, Charles (Associate Professor)

Do co-occurring plants avoid competing for N?

All plants require nitrogen, so how can species co-exist if they're competing for the same limiting resource? This project will examine the hypothesis that plants avoid competing fo more...

Supervisor(s): Warren, Charles (Associate Professor)