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We have 33 Other (x-ray) PhD Projects, Programmes & Scholarships

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Other (x-ray) PhD Projects, Programmes & Scholarships

We have 33 Other (x-ray) PhD Projects, Programmes & Scholarships

Last chance to apply

Future Carbon-Neutral Fuels: The Chemistry of Ammonia on Steel Surfaces

  Research Group: School of Chemical and Process Engineering
This project will examine how ammonia, a carbon-free fuel considered a replacement for diesel, impacts on the longevity and performance of existing engine technologies. Read more
Last chance to apply

Mechanistic understanding of the formation of squaric acid based functional organic multi-component materials

  Research Group: School of Chemical and Process Engineering
Are you interested in working in a large collaborative team towards advancing the understanding of how molecules interact during the crystallisation process?. Read more

Theremoelectric Nanomaterials for Energy Recovery

Thermoelectric materials offer the unique capability to convert waste heat directly into electrical energy. Efficiency is related to a figure of merit (ZT S2sT/k), that is determined by the Seebeck coefficient (S), electrical conductivity (s) and thermal conductivity (k). Read more
Last chance to apply

Predictive design of drug co-crystals through correlative studies of inter-molecular interactions

  Research Group: School of Chemical and Process Engineering
This interdisciplinary project presents an exciting opportunity for an ambitious scientist or engineer to work across the boundaries of chemistry, physics and engineering, with opportunities to develop a broad portfolio of skills. Read more

Discovery of Functional Inorganic Materials for Net Zero Applications using High-Throughput Synthesis

This project will use high-throughput solid state synthesis methods developed in the group (Hampson 2023) to accelerate the discovery of new functional inorganic (oxide) materials for applications towards net zero technologies e.g. Read more

Sustainable Carbon Nanomaterials for Electrochemical Energy Conversion in Hydrogen Fuel Cells

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Electrochemical processes are at the heart of the hydrogen economy providing a means to convert renewable energy into green hydrogen via electrolysis or converting hydrogen into electrical power using fuel cells. Read more

Nanocellulose as a Sustainable Electrolyte for Electrochemical Energy Conversion

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Polymer electrolyte membrane water electrolysis (PEMWE) can convert renewable energy into green hydrogen, whilst polymer electrolyte membrane fuel cells (PEMFCs) convert hydrogen into electrical power. Read more

High-throughput solid state synthesis of functional inorganic materials for net zero applications

The discovery of new functional materials to drive technologies for the net zero transition, such as batteries, solar absorbers, rare-earth-free magnets for wind power and a myriad of other unmet needs, is a scientific and societal grand challenge. Read more

Develop Silicon-based Anode Materials for Next Generation Lithium-ion Batteries

This ARC Linkage project, a collaboration between UTS researchers and industry partner which aims to revolutionize lithium-ion battery technology by developing low-cost, high-performance silicon-based anode materials. Read more

Next-Generation Hydrogen Production Using Polymer Nanotemplates

Hydrogen vehicles are already on the road, and most ICE vehicles can combust hydrogen with simple alterations. The byproduct of combustion is water vapour, making hydrogen one of the most sustainable fuels available. Read more

New Materials for Solid-State Batteries

Rechargeable lithium-ion batteries are widely used in mobile applications. However, concerns about the availability of lithium and cobalt raw materials suggest alternative materials may be needed in future large-scale applications. Read more

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