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We have 11 Energy Technologies (synthesis) PhD Projects, Programmes & Scholarships

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Energy Technologies (synthesis) PhD Projects, Programmes & Scholarships

We have 11 Energy Technologies (synthesis) PhD Projects, Programmes & Scholarships

Stability and efficiency improvement of perovskite solar cells by controlling synthesis and deposition processing parameters

Organic–inorganic hybrid metal halide perovskite solar cells (PSCs) have gained extensive research interest in the last decade due to their low-cost fabrication, excellent optoelectronic properties, and rapid increase in power conversion efficiency. 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

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

Electrification of biogas upgrading via plasma-catalysis

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

Oxidic Nanomaterials for High Density Storage in Li-ion Batteries

  Research Group: Chemistry and Biosciences
The oxides of a number of materials are very appealing candidates as substitutes for conventional anodes in lithium-ion batteries because of their high theoretical capacity, high electric conductivity low potential of lithium ion intercalation, as well as superior electron mobilities, with one such material, SnO2 being particularly appealing. Read more
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