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We have 128 advanced materials PhD Projects, Programmes & Scholarships for Non-European Students

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advanced materials PhD Projects, Programmes & Scholarships for Non-European Students

We have 128 advanced materials PhD Projects, Programmes & Scholarships for Non-European Students

New concepts and advanced materials for quantum nanophotonics

  Research Group: Inorganic Semiconductors
After the discovery of two-dimensional (2D) atomically thin carbon crystal, graphene, a very large family of layered 2D “van der Waals materials” came to light, called after the van der Waals forces holding together their atomic planes. Read more

Exploring Advanced Materials for Mitigating Cavitation Damage

Supervisory Team.   Ivo Peters. Project description. Cavitation damage poses a substantial threat to equipment across various industries, impacting performance, increasing maintenance costs, causing downtime, and posing safety and environmental risks. Read more

Wearable Thermoelectric Generators Using Advanced Materials

Supervisory Team: Dr Katrina Morgan, Dr Ioannis Zeimpekis . Project description. Wearable technologies are revolutionising our daily lives, integrating everyday objects into our clothes, accessories and even our bodies. Read more

Novel topologies and technologies for advanced reluctance machines

Project start date. 01 October 2024. Project duration. 4 years. Studentship funding. Home tuition fees (currently £6,035/year). Maintenance stipend (currently £20,622/year) for 3.5 years. 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

Atomic Layer Deposition of Novel Nanolayer Materials for Solar Cells

Project Description. Solar photovoltaics (PV) has emerged as THE breakthrough technology which will underpin the coming clean energy transition and allow us to address the epochal challenge of climate change. Read more

Experimental Discovery of New Ionic Conducting Materials Towards Net-Zero Technologies

Materials that allow the rapid motion of ions are essential for the new energy technologies needed to meet the challenge of net zero, such as batteries, fuel cells and electrolysers for green hydrogen. Read more

Novel Phase Change Materials for Neuromorphic Applications

Supervisory Team: Ioannis Zeimpekis, Fred Gardes . Project description. In collaboration with a large EU consortium, we work to create a reprogrammable neuromorphic photonic platform for a variety of applications from telecommunications to biosensing. Read more

Synchrotron X-ray Studies of Energy Materials

The principal focus of this PhD project is to apply advanced X-ray methodologies to the study of materials relevant to energy technologies, in particular on materials with electrochemical applications. Read more

Advanced crystal-film engineering

Supervisory Team: Jacob Mackenzie. Project description. Novel crystalline photonic devices offer exciting opportunities for creating efficient lasers and manipulating the properties of light. Read more

Henry Royce Institute PhD Opportunities

Right now, our society faces huge, urgent challenges. From the imperative to achieve net-zero, to the need to build a resilient, circular economy in an uncertain world, to the drive for increased productivity as our fellow nations embrace the digital revolution. Read more

PhD in Beam-Steering Programmable Metasurfaces for Microwave Devices

Project Overview. We are seeking exceptional candidates with a passion for interdisciplinary research in the fields of Physics, Engineering, and Material Science for a fully funded 3.5-year PhD research project. Read more

Synthesis of Carbon-rich Molecular Materials

New carbon-rich molecular materials, based on well-defined nanographenes and other novel polyaromatic architectures, will be rationally synthesised to better understand structure-property relationships. Read more

Development of polymerisation-induced self-assembly (PISA) systems for mechanochemical transformations

Block copolymers (BCPs) have potential in applications ranging from drug delivery to sensing or functional coatings due to their ability to form a wide range of controlled self-assembled nanostructures in solution. Read more

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