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We have 27 Physical Chemistry (information studies) PhD Projects, Programmes & Scholarships

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Physical Chemistry (information studies) PhD Projects, Programmes & Scholarships

We have 27 Physical Chemistry (information studies) PhD Projects, Programmes & Scholarships

Taking Light Induced Electron Paramagnetic Resonance In Cell for Biological Structural Determination

Studying the structure of proteins and other biological systems is an important step in understanding their function. Most structural studies are conducted in environments that are far away from native conditions, such as those found inside a cell. 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

Synthetic and Mechanistic Studies into Enzymatic Degradation of Waste Plastics

Plastics are a broad range of solid polymeric materials that have found widespread application globally. However, there has been a steady accumulation of discarded plastics and there is now growing awareness that they present a significant hazard to the natural environment and human health. Read more

PhD in Chemistry: Developing innovative organofluorine chemistry

PhD in Chemistry - Developing innovative organofluorine chemistry. Dr Matthew Tredwell is looking for a PhD student to develop innovative organofluorine chemistry. Read more

Developing novel light-induced in-situ Electron Paramagnetic Resonance (EPR) methods

Light-induced in-situ Electron Paramagnetic Resonance (EPR) studies are a growing field in both continuous wave and pulsed EPR. It can be used to monitor photoactivated chemical and biochemical reactions involving radical reagents, projects or intermediates. Read more

Organic Synthesis and Self-Assembly of State-Independent Electrolyte Materials

Ideal electrolytes for energy devices such as batteries and solar cells would (i) be lightweight and flexible, (ii) exhibit thermal stability, (iii) be non-volatile (to reduce fire risk), (iv) provide good interfacial contact with electrodes, (v) be amenable to processing and recycling, (vi) have high ionic conductivities, and (vii) be made from cheap, renewable feedstocks. Read more

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