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We have 8 Nanotechnology (corrosion) PhD Research Projects PhD Projects, Programmes & Scholarships

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Nanotechnology (corrosion) PhD Research Projects PhD Projects, Programmes & Scholarships

We have 8 Nanotechnology (corrosion) PhD Research Projects PhD Projects, Programmes & Scholarships

Hot corrosion studies of gas turbine alloy materials PhD

This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details to identify the material degradation and coatings applications details in extreme environments. Read more

Material degradation study of heat-exchanger materials and coatings for renewable energy PhD

This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details to identify the material degradation and coatings applications details in extreme environments. Read more

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

Material degradation study of energy storage materials for renewable technologies PhD

This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details to identify the material degradation details in extreme environments. Read more

Microbial Induced Electrochemistry at the Local Site and Single Cell Level

Microbial Induced Corrosion (MIC) is a serious economic problem with an estimate worldwide cost of $113 Bn every year. MIC impacts a very wide range of industries, from power plants to construction, and even the health of humans with implants or protheses. Read more

Fuel Retention and Release Mechanisms in Breeder Blanket Materials for Nuclear Fusion Devices

With climate change driving a desire to move towards a low-carbon/carbon-free energy landscape, power generated from nuclear fusion offers a high-capacity, baseload electricity generation for the future. Read more
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